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VESSELS / INTERACTIVE 3D

Gas–liquid coalescer concept

Inspect seven hollow cartridge feeds, perforated cores, separate media/drainage envelopes, a drilled tube sheet and independent liquid boundaries.

Static preview of the gas–liquid coalescer concept schematic
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Drag to orbit · Scroll or pinch to zoom · Select a visible part or use the parts list. Keyboard: focus the view and use arrow keys to orbit.

HOW TO READ THIS MODEL

The system, explained.

Coalescence brings small liquid droplets together within separation media so that larger droplets can drain from a gas stream. It differs from bulk liquid separation, a solids screen and vapor removal. This original inside-to-outside teaching arrangement places seven hollow feeds through a tube sheet into closed-top cartridge cores. Separate solid annular shapes mark the media and drainage regions; they do not reproduce fibres, pores or a real cartridge product. The upper liquid boundary and lower incoming-chamber liquid boundary remain separate. Static arrows illustrate relationships only. Compare the gas–liquid vessel, dry cyclone and strainer without assuming a matched process train or measured outlet quality.

Model scope and limits

Original invented geometry: hollow upright vessel and lower head, closed top joint, seven drilled tube-sheet feed positions, seven hollow standoffs/cores with 252 actual radial core openings, seven closed caps and separate mounting/end/seal markers, media and drainage envelopes, sparse cage rails/bands, six independent hollow boundaries, 32 smooth studs/annular washers/bored nuts, three legs/brackets/drilled feet and fourteen static arrow annotations. 275 named mesh instances include repeated hardware and cartridge components. Media/drainage envelopes are solid visual meshes, not a porous fluid domain, specific fibre construction, droplet capture or drainage calculation. No OEM CAD, source figures, product dimensions or surveyed plant imported. No capture efficiency, pore specification, liquid loading/carryover, vapor removal, pressure drop, sizing, selected service, gas cleanliness, seal/bypass leakage, thread/preload/contact/facing/weld/material/pressure/structural/foundation/manufacturing or complete collision qualification. No differential-pressure instrument, control/protection, drain valve, downstream liquid-handling or complete process plant is supplied. No installation, opening, operating or maintenance procedure.

Source links support further study; no affiliation or endorsement is implied.

CHECK YOUR UNDERSTANDING

What does the gold annular media envelope establish?

Choose an answer

GUIDED COMPONENT STUDY

Trace the system.

Read each explanation, then focus its component in the explorer. This is a learning route through the model, with no operating or maintenance sequence.

  1. Separate enclosure from internal regions

    The hollow upright wall has actual side openings and a separate curved lower closure. The web assembly remains intact; Reveal internals hides shell-layer pieces. The poster makes additional presentation cuts after intact export, without depicting an opening procedure.

  2. Trace the tube-sheet feed connection

    A hollow extension passes through one of seven drilled tube-sheet positions into a cartridge core. A clear exported-geometry centreline is distinct from a validated gas-flow or seal result. The tube sheet retains material between feed positions.

  3. Find the actual core perforations

    Thirty-six separate radial bores cut this core wall. Seven cores have 252 openings in total. These coarse original support holes are not a media pore-size, filtration grade, pressure-drop curve or capture-efficiency specification.

  4. Identify a solid media marker

    The gold annular shape marks a media region but remains a solid visual mesh. There are no individual fibres, connected pores or droplets in it. Reveal internals removes the envelope from view so that the hollow perforated core can be inspected.

  5. Read the outer drainage and cage separately

    A separate outer envelope distinguishes a drainage region from the media and sparse cage-support rails/bands. The downward arrow is a selectable annotation, not a manufactured drain pipe, measured liquid film or calculated drainage rate.

  6. Inspect the closed cartridge top

    This cap closes the illustrated axial core above its perforated region. Fresh GLB tests detect retained cap material while the feed axis below it stays clear. Seal markers and geometric closure do not establish real bypass prevention or contact pressure.

  7. Keep liquid boundaries independent

    The upper-side drain lies above the tube sheet. A different drain passes through the lower curved head below it. The model contains no connecting drain line, drain valve, level-control logic, liquid-handling system or actual liquid level.

  8. Locate the two pressure-tap regions

    Two independent hollow necks locate lower incoming-side and upper cartridge-side tap regions. No sensing element, tubing manifold or differential-pressure instrument connects them. A tap location does not establish a reading, alarm threshold or cartridge-change procedure.

  9. Inspect separate joint hardware

    Twelve top-joint stud/washer/nut groups sit beside the closure plate and gasket marker. Other groups belong to connection flanges. The washer and nut have actual bores, but threads, preload, qualified facing and sealing contact are absent.

  10. Check the support boundary

    Three raised legs and separate radial bracket markers position the vessel. Each foot has four actual anchor openings. Anchors, foundation, loads, welds, strength and vibration remain outside this teaching assembly.

ACCESSIBLE COMPONENT REFERENCE

Every part, in plain language.

Search all components ↗Model provenance ↗
Coalescer vessel wall

Hollow upright wall with separate wet-gas, gas-outlet, upper-drain and pressure-tap openings. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Lower hollow head

Nested curved lower closure with an actual separate drain opening; no code head profile. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top vessel flange

Annular top vessel member, separate from the cover. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top closure plate

Closed top plate with twelve true fastener bores; flat shape is an invented teaching choice. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint gasket marker

Perimeter seal-location marker; overlap is not verified compression. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 1 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 1 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 1 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 2 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 2 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 2 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 3 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 3 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 3 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 4 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 4 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 4 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 5 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 5 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 5 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 6 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 6 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 6 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 7 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 7 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 7 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 8 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 8 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 8 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 9 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 9 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 9 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 10 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 10 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 10 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 11 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 11 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 11 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 12 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 12 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Top joint 12 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge tube sheet

Separates the lower incoming chamber from the upper cartridge-side collection region, with seven actual circular feed openings. Seal/contact performance is not established. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / feed standoff

Hollow feed extension through a tube-sheet opening into the cartridge core. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / mounting collar

Separate annular mounting-location marker above the tube sheet. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / mount seal marker

Separate mounting seal envelope; tolerances, squeeze and bypass leakage are unverified. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / perforated core

Hollow cylindrical core with thirty-six actual radial openings. This support geometry is not a rated filter media or pore-size specification. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / media envelope

Solid annular visual envelope marking where porous coalescing media would be. Fibres, pore network and droplet capture are not modeled. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / drainage-layer envelope

Separate outer annular visual envelope for a drainage region. It is not a specified fabric, liquid film or calculated drainage rate. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / bottom end ring

Separate open lower end ring around the feed core. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / top seal marker

Separate top seal-location ring; no compression/contact result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / closed top cap

Separate closed top boundary above the core, preventing the illustrated axial passage from being an open-ended bypass. No leakage qualification. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / outer cage rail 1

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / outer cage rail 2

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / outer cage rail 3

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / outer cage rail 4

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / outer cage rail 5

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / outer cage rail 6

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / outer cage rail 7

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / outer cage rail 8

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / outer cage band 1

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / outer cage band 2

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / outer cage band 3

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / feed standoff

Hollow feed extension through a tube-sheet opening into the cartridge core. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / mounting collar

Separate annular mounting-location marker above the tube sheet. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / mount seal marker

Separate mounting seal envelope; tolerances, squeeze and bypass leakage are unverified. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / perforated core

Hollow cylindrical core with thirty-six actual radial openings. This support geometry is not a rated filter media or pore-size specification. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / media envelope

Solid annular visual envelope marking where porous coalescing media would be. Fibres, pore network and droplet capture are not modeled. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / drainage-layer envelope

Separate outer annular visual envelope for a drainage region. It is not a specified fabric, liquid film or calculated drainage rate. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / bottom end ring

Separate open lower end ring around the feed core. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / top seal marker

Separate top seal-location ring; no compression/contact result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / closed top cap

Separate closed top boundary above the core, preventing the illustrated axial passage from being an open-ended bypass. No leakage qualification. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / outer cage rail 1

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / outer cage rail 2

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / outer cage rail 3

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / outer cage rail 4

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / outer cage rail 5

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / outer cage rail 6

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / outer cage rail 7

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / outer cage rail 8

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / outer cage band 1

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / outer cage band 2

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / outer cage band 3

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / feed standoff

Hollow feed extension through a tube-sheet opening into the cartridge core. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / mounting collar

Separate annular mounting-location marker above the tube sheet. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / mount seal marker

Separate mounting seal envelope; tolerances, squeeze and bypass leakage are unverified. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / perforated core

Hollow cylindrical core with thirty-six actual radial openings. This support geometry is not a rated filter media or pore-size specification. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / media envelope

Solid annular visual envelope marking where porous coalescing media would be. Fibres, pore network and droplet capture are not modeled. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / drainage-layer envelope

Separate outer annular visual envelope for a drainage region. It is not a specified fabric, liquid film or calculated drainage rate. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / bottom end ring

Separate open lower end ring around the feed core. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / top seal marker

Separate top seal-location ring; no compression/contact result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / closed top cap

Separate closed top boundary above the core, preventing the illustrated axial passage from being an open-ended bypass. No leakage qualification. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / outer cage rail 1

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / outer cage rail 2

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / outer cage rail 3

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / outer cage rail 4

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / outer cage rail 5

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / outer cage rail 6

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / outer cage rail 7

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / outer cage rail 8

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / outer cage band 1

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / outer cage band 2

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / outer cage band 3

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / feed standoff

Hollow feed extension through a tube-sheet opening into the cartridge core. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / mounting collar

Separate annular mounting-location marker above the tube sheet. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / mount seal marker

Separate mounting seal envelope; tolerances, squeeze and bypass leakage are unverified. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / perforated core

Hollow cylindrical core with thirty-six actual radial openings. This support geometry is not a rated filter media or pore-size specification. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / media envelope

Solid annular visual envelope marking where porous coalescing media would be. Fibres, pore network and droplet capture are not modeled. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / drainage-layer envelope

Separate outer annular visual envelope for a drainage region. It is not a specified fabric, liquid film or calculated drainage rate. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / bottom end ring

Separate open lower end ring around the feed core. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / top seal marker

Separate top seal-location ring; no compression/contact result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / closed top cap

Separate closed top boundary above the core, preventing the illustrated axial passage from being an open-ended bypass. No leakage qualification. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / outer cage rail 1

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / outer cage rail 2

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / outer cage rail 3

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / outer cage rail 4

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / outer cage rail 5

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / outer cage rail 6

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / outer cage rail 7

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / outer cage rail 8

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / outer cage band 1

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / outer cage band 2

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / outer cage band 3

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / feed standoff

Hollow feed extension through a tube-sheet opening into the cartridge core. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / mounting collar

Separate annular mounting-location marker above the tube sheet. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / mount seal marker

Separate mounting seal envelope; tolerances, squeeze and bypass leakage are unverified. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / perforated core

Hollow cylindrical core with thirty-six actual radial openings. This support geometry is not a rated filter media or pore-size specification. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / media envelope

Solid annular visual envelope marking where porous coalescing media would be. Fibres, pore network and droplet capture are not modeled. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / drainage-layer envelope

Separate outer annular visual envelope for a drainage region. It is not a specified fabric, liquid film or calculated drainage rate. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / bottom end ring

Separate open lower end ring around the feed core. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / top seal marker

Separate top seal-location ring; no compression/contact result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / closed top cap

Separate closed top boundary above the core, preventing the illustrated axial passage from being an open-ended bypass. No leakage qualification. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / outer cage rail 1

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / outer cage rail 2

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / outer cage rail 3

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / outer cage rail 4

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / outer cage rail 5

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / outer cage rail 6

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / outer cage rail 7

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / outer cage rail 8

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / outer cage band 1

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / outer cage band 2

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / outer cage band 3

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / feed standoff

Hollow feed extension through a tube-sheet opening into the cartridge core. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / mounting collar

Separate annular mounting-location marker above the tube sheet. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / mount seal marker

Separate mounting seal envelope; tolerances, squeeze and bypass leakage are unverified. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / perforated core

Hollow cylindrical core with thirty-six actual radial openings. This support geometry is not a rated filter media or pore-size specification. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / media envelope

Solid annular visual envelope marking where porous coalescing media would be. Fibres, pore network and droplet capture are not modeled. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / drainage-layer envelope

Separate outer annular visual envelope for a drainage region. It is not a specified fabric, liquid film or calculated drainage rate. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / bottom end ring

Separate open lower end ring around the feed core. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / top seal marker

Separate top seal-location ring; no compression/contact result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / closed top cap

Separate closed top boundary above the core, preventing the illustrated axial passage from being an open-ended bypass. No leakage qualification. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / outer cage rail 1

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / outer cage rail 2

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / outer cage rail 3

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / outer cage rail 4

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / outer cage rail 5

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / outer cage rail 6

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / outer cage rail 7

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / outer cage rail 8

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / outer cage band 1

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / outer cage band 2

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / outer cage band 3

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / feed standoff

Hollow feed extension through a tube-sheet opening into the cartridge core. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / mounting collar

Separate annular mounting-location marker above the tube sheet. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / mount seal marker

Separate mounting seal envelope; tolerances, squeeze and bypass leakage are unverified. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / perforated core

Hollow cylindrical core with thirty-six actual radial openings. This support geometry is not a rated filter media or pore-size specification. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / media envelope

Solid annular visual envelope marking where porous coalescing media would be. Fibres, pore network and droplet capture are not modeled. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / drainage-layer envelope

Separate outer annular visual envelope for a drainage region. It is not a specified fabric, liquid film or calculated drainage rate. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / bottom end ring

Separate open lower end ring around the feed core. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / top seal marker

Separate top seal-location ring; no compression/contact result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / closed top cap

Separate closed top boundary above the core, preventing the illustrated axial passage from being an open-ended bypass. No leakage qualification. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / outer cage rail 1

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / outer cage rail 2

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / outer cage rail 3

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / outer cage rail 4

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / outer cage rail 5

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / outer cage rail 6

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / outer cage rail 7

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / outer cage rail 8

Sparse separate straight cage-support marker; no mesh/fabric weave or cartridge strength result. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / outer cage band 1

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / outer cage band 2

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / outer cage band 3

Separate outer cage-support band. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet neck

Independent open boundary neck; omitted external systems are not implied. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet flange

Separate annular flange with true fastener openings. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet joint 1 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet joint 1 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet joint 1 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet joint 2 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet joint 2 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet joint 2 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet joint 3 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet joint 3 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet joint 3 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet joint 4 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet joint 4 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet joint 4 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet joint 5 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet joint 5 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet joint 5 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet joint 6 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet joint 6 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Wet-gas inlet joint 6 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet neck

Independent open boundary neck; omitted external systems are not implied. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet flange

Separate annular flange with true fastener openings. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet joint 1 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet joint 1 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet joint 1 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet joint 2 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet joint 2 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet joint 2 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet joint 3 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet joint 3 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet joint 3 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet joint 4 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet joint 4 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet joint 4 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet joint 5 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet joint 5 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet joint 5 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet joint 6 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet joint 6 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Gas outlet joint 6 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Upper liquid drain neck

Independent open boundary neck; omitted external systems are not implied. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Upper liquid drain flange

Separate annular flange with true fastener openings. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Upper liquid drain joint 1 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Upper liquid drain joint 1 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Upper liquid drain joint 1 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Upper liquid drain joint 2 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Upper liquid drain joint 2 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Upper liquid drain joint 2 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Upper liquid drain joint 3 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Upper liquid drain joint 3 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Upper liquid drain joint 3 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Upper liquid drain joint 4 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Upper liquid drain joint 4 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Upper liquid drain joint 4 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Lower pressure tap neck

Independent open boundary neck; omitted external systems are not implied. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Upper pressure tap neck

Independent open boundary neck; omitted external systems are not implied. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Lower liquid drain neck

Separate lower incoming-chamber liquid boundary through the curved head; no connection to the upper collection drain. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Lower liquid drain flange

Annular lower drain flange with four true fastener bores. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Lower drain joint 1 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Lower drain joint 1 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Lower drain joint 1 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Lower drain joint 2 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Lower drain joint 2 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Lower drain joint 2 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Lower drain joint 3 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Lower drain joint 3 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Lower drain joint 3 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Lower drain joint 4 stud

Separate smooth stud marker without thread or preload. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Lower drain joint 4 washer

Separate annular washer marker. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Lower drain joint 4 nut

Separate hexagonal nut with actual bore; no thread engagement. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Support leg 1

Separate raised support location; no load or vibration calculation. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Support bracket 1

Radial attachment-location marker; no weld or connection strength. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Support foot 1

Separate foot with four actual anchor openings; anchors/foundation absent. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Support leg 2

Separate raised support location; no load or vibration calculation. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Support bracket 2

Radial attachment-location marker; no weld or connection strength. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Support foot 2

Separate foot with four actual anchor openings; anchors/foundation absent. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Support leg 3

Separate raised support location; no load or vibration calculation. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Support bracket 3

Radial attachment-location marker; no weld or connection strength. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Support foot 3

Separate foot with four actual anchor openings; anchors/foundation absent. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / inside-out direction annotation

Static radial arrow for this teaching inside-to-outside relationship, not a measured gas velocity or particle path. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 1 / downward drainage annotation

Static downward arrow outside the media envelope; not a drain pipe, liquid film or actual drainage calculation. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / inside-out direction annotation

Static radial arrow for this teaching inside-to-outside relationship, not a measured gas velocity or particle path. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 2 / downward drainage annotation

Static downward arrow outside the media envelope; not a drain pipe, liquid film or actual drainage calculation. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / inside-out direction annotation

Static radial arrow for this teaching inside-to-outside relationship, not a measured gas velocity or particle path. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 3 / downward drainage annotation

Static downward arrow outside the media envelope; not a drain pipe, liquid film or actual drainage calculation. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / inside-out direction annotation

Static radial arrow for this teaching inside-to-outside relationship, not a measured gas velocity or particle path. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 4 / downward drainage annotation

Static downward arrow outside the media envelope; not a drain pipe, liquid film or actual drainage calculation. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / inside-out direction annotation

Static radial arrow for this teaching inside-to-outside relationship, not a measured gas velocity or particle path. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 5 / downward drainage annotation

Static downward arrow outside the media envelope; not a drain pipe, liquid film or actual drainage calculation. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / inside-out direction annotation

Static radial arrow for this teaching inside-to-outside relationship, not a measured gas velocity or particle path. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 6 / downward drainage annotation

Static downward arrow outside the media envelope; not a drain pipe, liquid film or actual drainage calculation. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / inside-out direction annotation

Static radial arrow for this teaching inside-to-outside relationship, not a measured gas velocity or particle path. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Cartridge 7 / downward drainage annotation

Static downward arrow outside the media envelope; not a drain pipe, liquid film or actual drainage calculation. Original invented static geometry; no pressure, materials, filtration efficiency, liquid carryover, pore size, sizing, sealing, structural, operating or service qualification.

Media and drainage layers are solid visual envelopes. Static arrows are teaching annotations, not pipes, particle trajectories or calculated flow. No pore network or capture result is supplied.