Electrostatic-treater presentation plinth
Display base, not a foundation. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Complete electrostatic-treater vessel wall
Complete double-surface horizontal enclosure with six separate wall openings. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Bored emulsion-feed end closure
End closure with one actual emulsion-feed opening. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Closed treated-side end closure
Separate closed end, without a selected pressure-vessel head form. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Feed-side enclosure seam marker
Visual junction, not a weld or seal. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Treated-side enclosure seam marker
Visual junction, not a weld or seal. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Open oil-emulsion feed neck
Open produced-fluid emulsion arrival through the bored end. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Open treated-oil outlet neck
Upper conceptual oil destination, not an oil-quality result. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Open produced-water draw neck
Lower conceptual water destination before further handling. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Emulsion-feed open collar
Unrated open process-boundary marker. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Treated-oil open collar
Unrated open process-boundary marker. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Produced-water open collar
Unrated open process-boundary marker. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Open internal feed-distribution cue
Hollow invented inlet tube. Its side holes locate an entry region, without proven distribution. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Feed-tube open end ring
Separate open endpoint, with no selected distributor design. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 1 long rail 1
Separate unelectrified teaching rail; no material, potential or field profile. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 1 long rail 2
Separate unelectrified teaching rail; no material, potential or field profile. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 1 long rail 3
Separate unelectrified teaching rail; no material, potential or field profile. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 1 long rail 4
Separate unelectrified teaching rail; no material, potential or field profile. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 1 long rail 5
Separate unelectrified teaching rail; no material, potential or field profile. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 1 cross rail 1
Separate open teaching rail; its invented spacing provides no coalescence result. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 1 cross rail 2
Separate open teaching rail; its invented spacing provides no coalescence result. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 1 cross rail 3
Separate open teaching rail; its invented spacing provides no coalescence result. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 1 cross rail 4
Separate open teaching rail; its invented spacing provides no coalescence result. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 1 cross rail 5
Separate open teaching rail; its invented spacing provides no coalescence result. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 1 cross rail 6
Separate open teaching rail; its invented spacing provides no coalescence result. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 1 cross rail 7
Separate open teaching rail; its invented spacing provides no coalescence result. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 1 side frame 1
Open frame-location cue, without attachment design. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 1 side frame 2
Open frame-location cue, without attachment design. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 2 long rail 1
Separate unelectrified teaching rail; no material, potential or field profile. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 2 long rail 2
Separate unelectrified teaching rail; no material, potential or field profile. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 2 long rail 3
Separate unelectrified teaching rail; no material, potential or field profile. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 2 long rail 4
Separate unelectrified teaching rail; no material, potential or field profile. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 2 long rail 5
Separate unelectrified teaching rail; no material, potential or field profile. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 2 cross rail 1
Separate open teaching rail; its invented spacing provides no coalescence result. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 2 cross rail 2
Separate open teaching rail; its invented spacing provides no coalescence result. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 2 cross rail 3
Separate open teaching rail; its invented spacing provides no coalescence result. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 2 cross rail 4
Separate open teaching rail; its invented spacing provides no coalescence result. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 2 cross rail 5
Separate open teaching rail; its invented spacing provides no coalescence result. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 2 cross rail 6
Separate open teaching rail; its invented spacing provides no coalescence result. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 2 cross rail 7
Separate open teaching rail; its invented spacing provides no coalescence result. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 2 side frame 1
Open frame-location cue, without attachment design. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Grid-region 2 side frame 2
Open frame-location cue, without attachment design. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Upper deck stand-off marker 1
Static support-location marker, not an electrical insulator or manufactured suspension. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Lower deck stand-off marker 1
Static support-location marker with no load or electrical qualification. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Upper deck stand-off marker 2
Static support-location marker, not an electrical insulator or manufactured suspension. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Lower deck stand-off marker 2
Static support-location marker with no load or electrical qualification. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Upper deck stand-off marker 3
Static support-location marker, not an electrical insulator or manufactured suspension. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Lower deck stand-off marker 3
Static support-location marker with no load or electrical qualification. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Upper deck stand-off marker 4
Static support-location marker, not an electrical insulator or manufactured suspension. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Lower deck stand-off marker 4
Static support-location marker with no load or electrical qualification. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Covered electrical-entry hollow neck
A vessel penetration location, closed externally by a separate cover. It is not an energized feedthrough. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Electrical-entry cover seat
Annular visual seat; no dielectric or sealing specification. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Closed electrical-entry cover
Separate solid cover. No electrical connection or safe-access instruction is depicted. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Static water-drop reading marker 1
Fixed blue reading marker only: no electric-field, droplet trajectory, collision or settling simulation. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Static water-drop reading marker 2
Fixed blue reading marker only: no electric-field, droplet trajectory, collision or settling simulation. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Static water-drop reading marker 3
Fixed blue reading marker only: no electric-field, droplet trajectory, collision or settling simulation. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Static water-drop reading marker 4
Fixed blue reading marker only: no electric-field, droplet trajectory, collision or settling simulation. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Static water-drop reading marker 5
Fixed blue reading marker only: no electric-field, droplet trajectory, collision or settling simulation. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Static water-drop reading marker 6
Fixed blue reading marker only: no electric-field, droplet trajectory, collision or settling simulation. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Static lower water-region plane
Arbitrary visual region, not a measured oil-water interface or inventory. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Upper observation hollow neck
Uninstrumented possible observation location; no sensor, alarm or level-control scheme. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Upper observation open collar
Open uninstrumented location marker. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Lower observation hollow neck
Uninstrumented possible observation location; no sensor, alarm or level-control scheme. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Lower observation open collar
Open uninstrumented location marker. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Closed treater inspection neck
Actual wall opening with separate closed cover, without vessel-entry guidance. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Treater inspection cover seat
Annular marker, not a gasket or rated joint. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Closed treater inspection cover
Separate static closed cover with no maintenance procedure. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Treater support stand 1
Illustrative contact only, not load or foundation design. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Treater bored display foot 1
Independent display foot with an actual anchor cue opening. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Treater support stand 2
Illustrative contact only, not load or foundation design. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Treater bored display foot 2
Independent display foot with an actual anchor cue opening. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Treater support stand 3
Illustrative contact only, not load or foundation design. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Treater bored display foot 3
Independent display foot with an actual anchor cue opening. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Treater support stand 4
Illustrative contact only, not load or foundation design. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.
Treater bored display foot 4
Independent display foot with an actual anchor cue opening. Original static role geometry. No selected crude, emulsion, voltage, field, power supply, grid spacing, pressure, temperature, water quality, control, separation or safe service is specified.