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Dry cyclone separator concept

Explore the hollow cone, offset inlet, central outlet tube and two static vortex annotations, with separate drilled joints and supports.

Static preview of the dry cyclone separator concept schematic
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HOW TO READ THIS MODEL

The system, explained.

A dry cyclone uses an inertial separation concept for particles carried in gas. The general relationship spirals downward near the wall and upward toward a central gas outlet, while collected solids have a lower boundary. This original model distinguishes the cylindrical body, tapering cone, offset rectangular inlet and hollow outlet extension. Gold and blue spirals are static annotations, not internal pipes or computed flow. It has no rotating impeller. Compare the gas–liquid vessel and perforated strainer to distinguish different separation roles; these are independent concepts, without a matched plant installation.

Model scope and limits

Original invented geometry: hollow cylinder and cone, real offset rectangular inlet opening/duct/flange, central hollow gas-outlet extension, annular top cover, body/cone joint markers, open gas and solids flanges, 38 separately named smooth studs/annular washers/bored hex nuts, three support legs/brackets/drilled feet and four static spiral/arrow annotations. 141 named mesh instances include repeated hardware. No OEM CAD, source figures, surveyed facility, patented design or product dimensions imported. The two spiral markers share a general azimuthal sense and opposite axial relationships; they are not CFD, a particle trajectory, a complete fluid domain or actual tubing. No particle-size distribution, capture efficiency, emissions/opacity result, pressure loss, velocity, erosion, leakage, fan/draft/airlock/hopper/discharge system, gas-liquid service or complete process plant is supplied. No pressure/material/structural/foundation/thread/facing/contact/sealing/manufacturing qualification or full collision analysis. No sizing, selection, opening, operating or maintenance procedure. The poster is a presentation cutaway, not a disassembly sequence.

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

CHECK YOUR UNDERSTANDING

What do the gold and blue spirals represent in this concept?

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. Recognize the hollow enclosure

    The intact web model has inner and outer wall surfaces and an actual rectangular inlet opening. Reveal internals removes shell-layer components from view. The poster is separately cut after intact export; neither viewing control is an opening or maintenance procedure.

  2. Find the offset inlet

    This gold rectangular duct has an open centre and enters beside the enclosure wall. Its separate flange has a rectangular centre and eight drilled holes. These original positions supply no inlet velocity, aerodynamic validation or specified upstream installation.

  3. Separate a vortex marker from hardware

    The gold spiral is a selectable static annotation for the outer descending relationship. Its slender solid mesh is not an internal pipe or particle trajectory. It sits within the invented bore envelope, without establishing turbulence, velocity, capture or a complete fluid domain.

  4. Compare the ascending annotation

    The blue annotation rises toward the central outlet inside its hollow extension. Both spirals use one azimuthal sense with opposing axial relationships. The arrows are fixed teaching marks; there is no timed flow animation or physical vortex calculation.

  5. Inspect the central outlet extension

    The separately selectable tube descends below the top plate and has real inner and outer surfaces. An actual exported-geometry centreline is clear through the gas boundary. Invented penetration length and bore do not establish separation, short-circuiting, outlet quality or equipment service.

  6. Read the tapered cone and lower boundary

    The cone has nested tapered surfaces and open ends. Fresh-import tests distinguish inner space from retained wall at three sections. The separate lower tube and flange end at an open solids boundary; handling equipment is outside this model.

  7. Distinguish joints from a qualified seal

    This separate annular marker lies between upper and lower joint members. Eight smooth fasteners each have a washer and a bored hexagonal nut. Drilled passages are geometry checks; overlaps and shapes do not establish gasket compression, preload, thread engagement, leakage or a rated joint.

  8. Inspect support and foundation boundaries

    Three separate legs and radial bracket markers locate the enclosure. Each foot has four actual anchor openings. Anchor bolts, foundation, loads, vibration, attachment strength and structural calculations are absent; these are original support locations for a teaching assembly.

ACCESSIBLE COMPONENT REFERENCE

Every part, in plain language.

Search all components ↗Model provenance ↗
Cyclone cylindrical wall

Hollow cylindrical enclosure with a true rectangular offset inlet opening. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Cyclone conical wall

Tapered double-surface cone with open upper and lower ends. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Offset tangential inlet duct

Open rectangular duct entering beside the cylindrical wall rather than through its centre. Tangential is a conceptual inlet arrangement, not a calculated inlet velocity or validated swirl field. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet rectangular flange

Separate flange with actual rectangular opening and eight bolt bores. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Central vortex-finder tube

Hollow central gas-outlet extension descending below the top plate. Length and diameter are invented, with no short-circuiting or separation result. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top enclosure flange

Separate top flange retaining the cylindrical bore. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover plate

Separate annular top plate closing the enclosure outside the central outlet tube. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top boundary gasket

Separate perimeter seal marker; geometric overlap is not qualified contact or compression. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone upper flange

Upper member at the body/cone boundary. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone lower flange

Lower member at the body/cone boundary. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone gasket marker

Separate boundary marker between cylindrical and conical regions. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet flange

Open gas-outlet boundary with eight drilled fastener bores; no downstream duct or fan. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet tube

Open lower solids boundary; hopper, discharge device, airlock and downstream handling are outside this concept. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet flange

Separate open lower flange with six drilled fastener bores. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 1 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 1 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 1 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 2 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 2 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 2 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 3 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 3 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 3 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 4 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 4 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 4 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 5 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 5 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 5 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 6 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 6 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 6 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 7 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 7 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 7 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 8 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 8 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Top cover fastener 8 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 1 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 1 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 1 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 2 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 2 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 2 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 3 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 3 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 3 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 4 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 4 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 4 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 5 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 5 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 5 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 6 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 6 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 6 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 7 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 7 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 7 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 8 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 8 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Body cone fastener 8 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 1 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 1 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 1 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 2 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 2 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 2 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 3 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 3 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 3 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 4 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 4 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 4 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 5 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 5 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 5 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 6 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 6 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 6 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 7 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 7 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 7 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 8 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 8 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gas outlet fastener 8 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet fastener 1 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet fastener 1 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet fastener 1 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet fastener 2 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet fastener 2 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet fastener 2 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet fastener 3 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet fastener 3 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet fastener 3 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet fastener 4 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet fastener 4 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet fastener 4 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet fastener 5 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet fastener 5 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet fastener 5 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet fastener 6 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet fastener 6 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Solids outlet fastener 6 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 1 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 1 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 1 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 2 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 2 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 2 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 3 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 3 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 3 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 4 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 4 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 4 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 5 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 5 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 5 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 6 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 6 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 6 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 7 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 7 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 7 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 8 stud

Separate smooth fastener marker without a mating thread or preload. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 8 washer

Separate annular washer marker. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inlet fastener 8 nut

Separate bored hexagonal nut marker; no thread engagement or tightening sequence. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Support leg 1

Separate support leg marker; no structural or foundation calculation. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Support bracket 1

Radial attachment marker between enclosure and leg. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Support foot 1

Separate foot with four true anchor openings; anchors and foundation absent. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Support leg 2

Separate support leg marker; no structural or foundation calculation. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Support bracket 2

Radial attachment marker between enclosure and leg. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Support foot 2

Separate foot with four true anchor openings; anchors and foundation absent. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Support leg 3

Separate support leg marker; no structural or foundation calculation. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Support bracket 3

Radial attachment marker between enclosure and leg. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Support foot 3

Separate foot with four true anchor openings; anchors and foundation absent. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Outer descending vortex marker

Original gold spiral annotation for the general outer descending relationship. It is not tubing, measured gas motion, particle trajectory or CFD. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inner ascending vortex marker

Original blue spiral annotation for the general inner ascending relationship toward the central outlet. It is not tubing, velocity, mass balance or a calculated vortex. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Outer direction marker

Static annotation arrow for a general teaching relationship; no velocity or live flow. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Inner direction marker

Static annotation arrow for a general teaching relationship; no velocity or live flow. Invented static teaching geometry; no rated pressure, materials, erosion, particle capture, sizing, flow simulation or operating/maintenance procedure.

Gold and blue spirals are static teaching annotations, not manufactured pipes or a computed flow field. Use Teaching vortex markers to show or hide them.