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.