Base frame
Illustrative support frame; foundations and structural design vary.
Complete hollow cold-separator wall
Full circular wall with real side penetrations. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Cold mixed-feed hollow neck
Open shell penetration and separate hollow neck. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Cold mixed-feed open rim
Open connection marker with no selected mating pipe. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Closed access location hollow neck
Open shell penetration and separate hollow neck. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Closed access location open rim
Open connection marker with no selected mating pipe. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Upper level tapping hollow neck
Open shell penetration and separate hollow neck. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Upper level tapping open rim
Open connection marker with no selected mating pipe. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Lower level tapping hollow neck
Open shell penetration and separate hollow neck. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Lower level tapping open rim
Open connection marker with no selected mating pipe. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Lower closed head with real drain aperture
Flat teaching head with bored centre; no pressure-head design. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Upper closed head with real gas aperture
Flat teaching head with bored centre; no pressure-head design. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Upper gas hollow neck
Separate open external boundary through a real head bore. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Upper gas open rim
Open marker only; no flange class or downstream line. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Lower condensed-liquid hollow neck
Separate open external boundary through a real head bore. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Lower condensed-liquid open rim
Open marker only; no flange class or downstream line. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Lower closure seam cue
Location cue only; no welded-joint design. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Upper closure seam cue
Location cue only; no welded-joint design. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Inlet diversion plate
Separate possible inlet momentum-redirection region; no hydraulic calculation, impingement rating or qualified internals. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Inlet plate stand-off -0.29
Illustrative support location without a structural design. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Inlet plate stand-off 0.29
Illustrative support location without a structural design. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist-region carrier ring
Distinct open support region, not a selected mist extractor. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 1 member 1
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 1 member 2
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 1 member 3
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 1 member 4
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 1 member 5
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 1 member 6
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 1 member 7
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 1 member 8
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 1 member 9
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 2 member 1
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 2 member 2
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 2 member 3
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 2 member 4
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 2 member 5
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 2 member 6
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 2 member 7
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 2 member 8
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 2 member 9
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 3 member 1
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 3 member 2
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 3 member 3
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 3 member 4
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 3 member 5
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 3 member 6
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 3 member 7
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 3 member 8
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Open mist lattice layer 3 member 9
Individually selectable open straight member. The crossed mesh suggests a mist-removal region, not supplier media, capture efficiency or low-temperature performance. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Static condensed-liquid region marker
Arbitrary visible phase-location marker, not a measured level, composition or recovery result. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Liquid-outlet breaker X cue
Open illustrative cross-plate, not a verified vortex breaker. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Liquid-outlet breaker Y cue
Second cross-plate cue without hydraulic qualification. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Closed access-seat annulus
Real shell opening, but the separate cover remains closed. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Closed access-cover disk
Separate solid static closure; never an entry instruction. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Access fastener-location cue 1
Unthreaded position cue; no preload or rated retention. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Access fastener-location cue 2
Unthreaded position cue; no preload or rated retention. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Access fastener-location cue 3
Unthreaded position cue; no preload or rated retention. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Access fastener-location cue 4
Unthreaded position cue; no preload or rated retention. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Access fastener-location cue 5
Unthreaded position cue; no preload or rated retention. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Access fastener-location cue 6
Unthreaded position cue; no preload or rated retention. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Access fastener-location cue 7
Unthreaded position cue; no preload or rated retention. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Access fastener-location cue 8
Unthreaded position cue; no preload or rated retention. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Support leg 1
Illustrative support without thermal movement or load design. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Bored support foot 1
Separate display foot with an actual anchor bore. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Support leg 2
Illustrative support without thermal movement or load design. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Bored support foot 2
Separate display foot with an actual anchor bore. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Support leg 3
Illustrative support without thermal movement or load design. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Bored support foot 3
Separate display foot with an actual anchor bore. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Support leg 4
Illustrative support without thermal movement or load design. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.
Bored support foot 4
Separate display foot with an actual anchor bore. Invented static proportions and roles. No selected feed, phase envelope, temperature, pressure, cryogenic material, insulation, cold-box arrangement, separation efficiency, controls, relief, rating, inspection or safe-service procedure.