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PROCESS PLANTS / INTERACTIVE 3D

SAGD steam-side process scene

Follow five visible stream relationships across three independently detailed 3D models and their open external boundaries.

Static preview of the sagd steam-side process scene schematic
Static preview · choose Load 3D to explore

All conceptual paths visible

Drag to orbit · Scroll or pinch to zoom · Select a visible part or use the parts list. Keyboard: focus the view and use arrow keys to orbit.

HOW TO READ THIS MODEL

The system, explained.

This original connected scene places our once-through steam generator, steam/liquid separator and injector–producer well-pair models into one inspectable teaching layout. A public Alberta project description shows one generator-to-separator example, while the Alberta Geological Survey explains the upper injector and lower producer roles. Five static hollow routes identify feedwater supply, generator wet-steam outlet to separator, upper steam toward the injector, lower separator liquid to separate handling, and produced fluids leaving the producer. Each route has a declared endpoint and independent source model. The equipment is rescaled and arranged for reading, not copied from or matched to a specific Alberta facility. The water-treatment and produced-water-recycling systems are deliberately open, rather than drawn as a complete loop.

Model scope and limits

Original 194-part connected learning scene with three reused detailed original assets, three separate open external boundaries and five hollow static route/arrow pairs. Source models retain their named components, but they are moved and rescaled for clarity and are not selected for one installation. The routes terminate at declared geometric endpoints and do not establish rated mating, fabricated pipe, a P&ID, a complete water loop, conditioned feedwater, steam dryness, liquid removal, produced-fluid separation, heat/mass balance, pressure/temperature, controls, relief, well integrity, reservoir forecast, energy use, emissions, permits or service qualification.

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

CHECK YOUR UNDERSTANDING

What do the five connected paths establish?

Choose an answer

GUIDED COMPONENT STUDY

Trace the system.

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

  1. Begin outside the scene

    The open neck marks where treated feedwater would enter the story. Water sourcing, treatment and pumps are not modeled.

  2. Trace the incoming relationship

    The blue hollow route ends at the generator inlet boundary. It is a static line, not a selected supply pipe or water-quality record.

  3. Open the convection detail

    The reused generator retains all seven hollow convection runs and eight radiant runs. This scene does not calculate heating or steam quality.

  4. Find the generator outlet

    The independent generator model ends open. A wet-steam relationship begins there, without a measured phase split or pressure.

  5. Follow wet steam to a second model

    This gold route joins declared teaching endpoints only. The two pieces were authored separately and are not matched equipment.

  6. Inspect the separator interior

    The original vessel keeps its full wall in the browser. The open guide is invented, without a verified capture result.

  7. Follow the upper steam side

    The upper route points toward a separate injector surface boundary. It does not verify injection-ready steam.

  8. Locate the injector

    The upper well path is separate from the producer. No wellhead, pressure control or completion has been selected.

  9. Keep separator liquid separate

    This lower path ends at an external handling marker. Flashing, heat recovery, recycle, treatment and disposal are outside the scene.

  10. Compare the lower well role

    The lower horizontal producer role conveys the SAGD relationship, not a measured chamber, rate or recovery forecast.

  11. End at produced-fluid handling

    This brown route ends before surface separation. The drawing makes no water recycle loop or product specification.

  12. Return to a detailed source

    Focus the source vessel here, then open its standalone lesson for wall bores and internal guides. Combined scale does not establish compatible connections.

CONNECTED PROCESS LESSON

Follow the steam-side SAGD roles

Original connected learning scene reusing three independently authored detailed models. Five hollow static paths terminate at declared open source-model and scene boundaries. No selected equipment, piping, well connection, water-treatment loop or operating plant is represented.

Color and static arrows identify declared relationships only. The model has no measured flow, live plant data or industry color standard. Treatment, pressure reduction, vapour handling, measurement, relief, shutdown, containment and disposal systems are outside this illustration.

Once-through steam-generator role

Original 63-part heating cutaway. This scene does not supply a feedwater-treatment system, heat duty or steam quality.

Open component explorer ↗

Steam and liquid separator role

Original 59-part vessel cutaway. Its guide shapes and liquid marker do not establish dryness, efficiency or blowdown.

Open component explorer ↗

Injector and producer well-pair roles

Original 58-part reservoir teaching section. It represents no surveyed pad, completion, chamber extent or production result.

Open component explorer ↗

External feedwater supply boundary

External treated-water supply role. Source, treatment, pumps and water quality are outside the scene.

Separate liquid-handling boundary

Lower separator destination ends here; no flash, recycle, treatment or disposal system is modeled.

Produced-fluid handling boundary

Producer fluid leaves toward unspecified surface separation; no fluid rate, recovery or water-recycle loop is represented.

Read each connection.

Start and end labels are backed by the same port registry used to generate the 3D routes. Ports and routes are invented; geometric agreement is not engineering validation.

FEEDWATER

External feedwater to generator

External feedwater supply boundary → Once-through steam-generator role

WET-STEAM

Generator outlet to separator inlet

Once-through steam-generator role → Steam and liquid separator role

STEAM

Separator upper steam to injector boundary

Steam and liquid separator role → Injector and producer well-pair roles

LIQUID

Separator lower liquid to open handling

Steam and liquid separator role → Separate liquid-handling boundary

PRODUCED

Producer to open surface-handling boundary

Injector and producer well-pair roles → Produced-fluid handling boundary

ACCESSIBLE COMPONENT REFERENCE

Every part, in plain language.

Search all components ↗Model provenance ↗
Base frame

Illustrative support frame; foundations and structural design vary.

Generator / Burner outer marker

Schematic register ring; not a certified burner opening. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Burner-side housing

Simple casing on the heating side, without controls, trip devices or fuel train. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection bank support 1

Schematic tube-location bar, not structural or thermal support design. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection bank support 2

Schematic tube-location bar, not structural or thermal support design. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection bank support 3

Schematic tube-location bar, not structural or thermal support design. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection bank support 4

Schematic tube-location bar, not structural or thermal support design. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection gas-side marker 1

Static transverse marker distinguishes gas-side space from the water-side tubes; not a calculated baffle. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection gas-side marker 2

Static transverse marker distinguishes gas-side space from the water-side tubes; not a calculated baffle. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection gas-side marker 3

Static transverse marker distinguishes gas-side space from the water-side tubes; not a calculated baffle. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection lower transition

Open-front enclosure section; insulation, casing joints and access are omitted. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection rear enclosure

Open-front enclosure section; insulation, casing joints and access are omitted. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection return bend 1

Separate hollow U return between adjacent teaching runs. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection return bend 2

Separate hollow U return between adjacent teaching runs. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection return bend 3

Separate hollow U return between adjacent teaching runs. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection return bend 4

Separate hollow U return between adjacent teaching runs. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection return bend 5

Separate hollow U return between adjacent teaching runs. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection return bend 6

Separate hollow U return between adjacent teaching runs. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection right enclosure

Open-front enclosure section; insulation, casing joints and access are omitted. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection roof

Roof with a true stack opening; draft and flue-gas performance are not modeled. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection tube run 1

Hollow open tube segment in the conceptual feedwater heating path. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection tube run 2

Hollow open tube segment in the conceptual feedwater heating path. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection tube run 3

Hollow open tube segment in the conceptual feedwater heating path. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection tube run 4

Hollow open tube segment in the conceptual feedwater heating path. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection tube run 5

Hollow open tube segment in the conceptual feedwater heating path. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection tube run 6

Hollow open tube segment in the conceptual feedwater heating path. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection tube run 7

Hollow open tube segment in the conceptual feedwater heating path. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Convection-to-radiant transition

Static path from the lower convection-bank role toward the first radiant run. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Feedwater inlet collar

Unrated, open boundary marker, not a selected flange. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Generator skid base

Visual support footprint, not a foundation or transportable skid design. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Illustrative heat marker 1

Static visual heat marker, not a burner flame or temperature field. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Illustrative heat marker 2

Static visual heat marker, not a burner flame or temperature field. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Illustrative heat marker 3

Static visual heat marker, not a burner flame or temperature field. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Open burner register

Hollow boundary marking a generic fuel-air heating role; no burner specification or flame stability. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Open exhaust stack

Hollow open exhaust boundary. No draft, emissions rate, treatment or stack design is established. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Open feedwater inlet

Open feedwater boundary. Treatment, pumps and water quality are outside this model. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Open wet-steam outlet path

Open outlet toward a separate steam/liquid separation role. It does not state steam quality. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant coil run 1

Separate hollow radiant-section tube. The colour only distinguishes the study path. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant coil run 2

Separate hollow radiant-section tube. The colour only distinguishes the study path. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant coil run 3

Separate hollow radiant-section tube. The colour only distinguishes the study path. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant coil run 4

Separate hollow radiant-section tube. The colour only distinguishes the study path. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant coil run 5

Separate hollow radiant-section tube. The colour only distinguishes the study path. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant coil run 6

Separate hollow radiant-section tube. The colour only distinguishes the study path. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant coil run 7

Separate hollow radiant-section tube. The colour only distinguishes the study path. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant coil run 8

Separate hollow radiant-section tube. The colour only distinguishes the study path. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant coil support 1

Illustrative coil-position bar, not a high-temperature support design. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant coil support 2

Illustrative coil-position bar, not a high-temperature support design. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant coil support 3

Illustrative coil-position bar, not a high-temperature support design. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant coil support 4

Illustrative coil-position bar, not a high-temperature support design. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant floor

Open-front enclosure section; insulation, casing joints and access are omitted. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant left enclosure

Open-front enclosure section; insulation, casing joints and access are omitted. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant rear enclosure

Open-front enclosure section; insulation, casing joints and access are omitted. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant return bend 1

Separate hollow U return between radiant-section teaching runs. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant return bend 2

Separate hollow U return between radiant-section teaching runs. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant return bend 3

Separate hollow U return between radiant-section teaching runs. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant return bend 4

Separate hollow U return between radiant-section teaching runs. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant return bend 5

Separate hollow U return between radiant-section teaching runs. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant return bend 6

Separate hollow U return between radiant-section teaching runs. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant return bend 7

Separate hollow U return between radiant-section teaching runs. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant right enclosure

Open-front enclosure section; insulation, casing joints and access are omitted. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Radiant roof

Open-front enclosure section; insulation, casing joints and access are omitted. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Stack base ring

Separate open stack base marker with no structural or joint rating. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Stack upper rim

Open exhaust rim, without cap, arrestor or emissions-control claim. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Generator / Wet-steam outlet collar

Unrated open outlet boundary; separator and injection well remain outside the model. Invented schematic geometry only. No tube schedule, fired-heater design, steam quality, heat duty, pressure, combustion, emissions, materials, controls or safe-service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Access-cover collar

Annular cover-location marker, not a rated joint. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Anchor position +0.67 +0.67 1

Smooth marker through a real foot opening. No threads, embedment or load. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Anchor position +0.67 +0.67 2

Smooth marker through a real foot opening. No threads, embedment or load. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Anchor position +0.67 +0.67 3

Smooth marker through a real foot opening. No threads, embedment or load. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Anchor position +0.67 +0.67 4

Smooth marker through a real foot opening. No threads, embedment or load. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Anchor position +0.67 -0.67 1

Smooth marker through a real foot opening. No threads, embedment or load. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Anchor position +0.67 -0.67 2

Smooth marker through a real foot opening. No threads, embedment or load. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Anchor position +0.67 -0.67 3

Smooth marker through a real foot opening. No threads, embedment or load. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Anchor position +0.67 -0.67 4

Smooth marker through a real foot opening. No threads, embedment or load. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Anchor position -0.67 +0.67 1

Smooth marker through a real foot opening. No threads, embedment or load. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Anchor position -0.67 +0.67 2

Smooth marker through a real foot opening. No threads, embedment or load. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Anchor position -0.67 +0.67 3

Smooth marker through a real foot opening. No threads, embedment or load. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Anchor position -0.67 +0.67 4

Smooth marker through a real foot opening. No threads, embedment or load. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Anchor position -0.67 -0.67 1

Smooth marker through a real foot opening. No threads, embedment or load. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Anchor position -0.67 -0.67 2

Smooth marker through a real foot opening. No threads, embedment or load. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Anchor position -0.67 -0.67 3

Smooth marker through a real foot opening. No threads, embedment or load. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Anchor position -0.67 -0.67 4

Smooth marker through a real foot opening. No threads, embedment or load. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Blowdown outlet collar

Unrated open liquid-destination marker; no control or disposal claim. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Bored support foot +0.67 +0.67

Separate plate with four geometric holes. No anchor design or installed foundation. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Bored support foot +0.67 -0.67

Separate plate with four geometric holes. No anchor design or installed foundation. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Bored support foot -0.67 +0.67

Separate plate with four geometric holes. No anchor design or installed foundation. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Bored support foot -0.67 -0.67

Separate plate with four geometric holes. No anchor design or installed foundation. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Central hollow steam riser

Open centre tube distinguishes a possible upper steam path from the surrounding vessel. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Closed access cover

Separate solid cover in a closed teaching pose; no entry or opening procedure. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Illustrative lower liquid surface

Static partial plane at an invented height. It is not a measured level, volume or separated-water result. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Individual guide blade 1

One open-spaced marker around the central riser; not an engineered cyclone vane. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Individual guide blade 2

One open-spaced marker around the central riser; not an engineered cyclone vane. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Individual guide blade 3

One open-spaced marker around the central riser; not an engineered cyclone vane. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Individual guide blade 4

One open-spaced marker around the central riser; not an engineered cyclone vane. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Individual guide blade 5

One open-spaced marker around the central riser; not an engineered cyclone vane. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Individual guide blade 6

One open-spaced marker around the central riser; not an engineered cyclone vane. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Individual guide blade 7

One open-spaced marker around the central riser; not an engineered cyclone vane. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Individual guide blade 8

One open-spaced marker around the central riser; not an engineered cyclone vane. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Liquid-plane edge marker

Thin annular reading edge, not a level setpoint. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Lower level boundary collar

Separate open collar with no pressure or connection rating. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Lower level boundary neck

Open location for a possible level connection; no instrument, indication or control. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Lower liquid blowdown neck

Open lower liquid boundary. Flash, heat recovery, recycle and disposal stay outside this scene. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Lower vessel seam marker

Separate visible junction marker, not a weld or inspected joint. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Open access neck

Hollow side opening; closed cover is a separate static part. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Open inlet guide annulus

Annular guide location with an actual open centre. No calculated swirl, residence time or capture. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Riser support tab 1-1

Separate support-location marker. Attachment and thermal movement are unspecified. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Riser support tab 1-2

Separate support-location marker. Attachment and thermal movement are unspecified. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Riser support tab 2-1

Separate support-location marker. Attachment and thermal movement are unspecified. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Riser support tab 2-2

Separate support-location marker. Attachment and thermal movement are unspecified. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Separator display base

Visual scene base, not an installed foundation. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Steam-separator hollow shell

Full annular vessel wall with independent actual side penetrations. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Steam-separator lower closure

Flat teaching closure with a real liquid-draw opening. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Steam-separator top closure

Flat teaching closure with a real central outlet opening. No pressure boundary is qualified. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Support leg +0.67 +0.67

Illustrative vessel support, without structural or foundation design. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Support leg +0.67 -0.67

Illustrative vessel support, without structural or foundation design. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Support leg -0.67 +0.67

Illustrative vessel support, without structural or foundation design. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Support leg -0.67 -0.67

Illustrative vessel support, without structural or foundation design. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Upper level boundary collar

Separate open collar with no pressure or connection rating. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Upper level boundary neck

Open location for a possible level connection; no instrument, indication or control. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Upper steam outlet collar

Unrated open steam destination marker. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Upper steam outlet neck

Open upper boundary toward possible injection handling, not a verified steam-quality result. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Upper vessel seam marker

Separate visible junction marker, not a weld or inspected joint. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Wet-steam inlet collar

Unrated open inlet marker, without gasket, bolts or compatible mating flange. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Separator / Wet-steam inlet hollow neck

Open possible inlet from the separate generator model; no matched line or condition. Invented teaching geometry only: no pressure-vessel code design, separation efficiency, steam dryness, blowdown rate, thermal process, instrument setting, controls, structural load or service qualification. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Ground-surface slab

Two actual openings receive the independently drawn injector and producer paths. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Illustrative gravity-drainage marker 1

Static downward reading path from the heated-region concept toward the lower producer. No actual drainage or recovery is simulated. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Illustrative gravity-drainage marker 2

Static downward reading path from the heated-region concept toward the lower producer. No actual drainage or recovery is simulated. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Illustrative gravity-drainage marker 3

Static downward reading path from the heated-region concept toward the lower producer. No actual drainage or recovery is simulated. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Illustrative reservoir backplane

Brown backdrop locates the two horizontal well paths in an invented reservoir section. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Illustrative upper boundary

Simple upper marker for reading the scene; not a mapped caprock or containment claim. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Illustrative upward arrow head 1

Static directional marker, not calculated steam movement. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Illustrative upward arrow head 2

Static directional marker, not calculated steam movement. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Illustrative upward arrow head 3

Static directional marker, not calculated steam movement. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Illustrative upward arrow head 4

Static directional marker, not calculated steam movement. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Illustrative upward steam marker 1

Static upward reading direction only; no pressure, phase transport or steam rate is modeled. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Illustrative upward steam marker 2

Static upward reading direction only; no pressure, phase transport or steam rate is modeled. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Illustrative upward steam marker 3

Static upward reading direction only; no pressure, phase transport or steam rate is modeled. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Illustrative upward steam marker 4

Static upward reading direction only; no pressure, phase transport or steam rate is modeled. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Injector curved well path

Upper path turns from the surface into the horizontal injector role. It is open at both ends. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Injector distal open end

Open far-end marker. No length, toe isolation, steam distribution or inflow profile is inferred. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Injector liner end marker 1

Separate annular section-end marker; it does not establish a joint, screen or liner specification. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Injector liner end marker 2

Separate annular section-end marker; it does not establish a joint, screen or liner specification. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Injector liner end marker 3

Separate annular section-end marker; it does not establish a joint, screen or liner specification. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Injector liner end marker 4

Separate annular section-end marker; it does not establish a joint, screen or liner specification. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Injector liner end marker 5

Separate annular section-end marker; it does not establish a joint, screen or liner specification. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Injector liner end marker 6

Separate annular section-end marker; it does not establish a joint, screen or liner specification. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Injector open boundary collar

Open endpoint, without wellhead pressure control, valves or external facilities. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Injector open liner section 1

One separate hollow, open-ended teaching section. Small gaps expose the path; they are not a perforation, slot size or completion design. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Injector open liner section 2

One separate hollow, open-ended teaching section. Small gaps expose the path; they are not a perforation, slot size or completion design. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Injector open liner section 3

One separate hollow, open-ended teaching section. Small gaps expose the path; they are not a perforation, slot size or completion design. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Injector open liner section 4

One separate hollow, open-ended teaching section. Small gaps expose the path; they are not a perforation, slot size or completion design. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Injector open liner section 5

One separate hollow, open-ended teaching section. Small gaps expose the path; they are not a perforation, slot size or completion design. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Injector open liner section 6

One separate hollow, open-ended teaching section. Small gaps expose the path; they are not a perforation, slot size or completion design. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Injector surface identification plinth

A colour-coded label location, not a pad survey, construction plan or safe-access platform. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Injector surface opening ring

Open visual boundary at the ground plane, without casing program or surface seal design. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Injector surface spool

Unrated surface connection marker; steam supply or produced-fluid handling remains outside this scene. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Overburden backplane

Separate overburden colour block; no stratigraphy, depth or rock properties are represented. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Producer curved well path

Lower path turns toward the produced-fluid surface boundary. It is open at both ends. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Producer distal open end

Open far-end marker. No length, toe isolation, steam distribution or inflow profile is inferred. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Producer liner end marker 1

Separate annular section-end marker; it does not establish a joint, screen or liner specification. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Producer liner end marker 2

Separate annular section-end marker; it does not establish a joint, screen or liner specification. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Producer liner end marker 3

Separate annular section-end marker; it does not establish a joint, screen or liner specification. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Producer liner end marker 4

Separate annular section-end marker; it does not establish a joint, screen or liner specification. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Producer liner end marker 5

Separate annular section-end marker; it does not establish a joint, screen or liner specification. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Producer liner end marker 6

Separate annular section-end marker; it does not establish a joint, screen or liner specification. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Producer open boundary collar

Open endpoint, without wellhead pressure control, valves or external facilities. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Producer open liner section 1

One separate hollow, open-ended teaching section. Small gaps expose the path; they are not a perforation, slot size or completion design. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Producer open liner section 2

One separate hollow, open-ended teaching section. Small gaps expose the path; they are not a perforation, slot size or completion design. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Producer open liner section 3

One separate hollow, open-ended teaching section. Small gaps expose the path; they are not a perforation, slot size or completion design. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Producer open liner section 4

One separate hollow, open-ended teaching section. Small gaps expose the path; they are not a perforation, slot size or completion design. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Producer open liner section 5

One separate hollow, open-ended teaching section. Small gaps expose the path; they are not a perforation, slot size or completion design. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Producer open liner section 6

One separate hollow, open-ended teaching section. Small gaps expose the path; they are not a perforation, slot size or completion design. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Producer surface identification plinth

A colour-coded label location, not a pad survey, construction plan or safe-access platform. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Producer surface opening ring

Open visual boundary at the ground plane, without casing program or surface seal design. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Producer surface spool

Unrated surface connection marker; steam supply or produced-fluid handling remains outside this scene. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Reservoir-section base

Open-front section support; no formation or foundation dimensions. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Reservoir-section floor

Lower visual boundary of this open-front teaching section. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Steam-chamber outline 1

Open arch marks a possible conceptual heated region above the injector. It is not a simulated chamber surface, observed extent or thermal front. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Steam-chamber outline 2

Open arch marks a possible conceptual heated region above the injector. It is not a simulated chamber surface, observed extent or thermal front. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Steam-chamber outline 3

Open arch marks a possible conceptual heated region above the injector. It is not a simulated chamber surface, observed extent or thermal front. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Steam-chamber outline 4

Open arch marks a possible conceptual heated region above the injector. It is not a simulated chamber surface, observed extent or thermal front. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

Well pair / Steam-chamber outline 5

Open arch marks a possible conceptual heated region above the injector. It is not a simulated chamber surface, observed extent or thermal front. Invented geometric teaching marker only; no well design, reservoir forecast, completion specification, pressure, temperature or recovery result. Reused at an invented scene location and scale. It is not selected or qualified for this train.

External feedwater supply boundary / open boundary neck

External treated-water supply role. Source, treatment, pumps and water quality are outside the scene. Open scene endpoint only. Invented static route in a schematic scene. No P&ID, fabricated pipe, selected joint, pressure, temperature, phase composition, flow, steam quality, treatment, integrity or operation is shown.

Separate liquid-handling boundary / open boundary neck

Lower separator destination ends here; no flash, recycle, treatment or disposal system is modeled. Open scene endpoint only. Invented static route in a schematic scene. No P&ID, fabricated pipe, selected joint, pressure, temperature, phase composition, flow, steam quality, treatment, integrity or operation is shown.

Produced-fluid handling boundary / open boundary neck

Producer fluid leaves toward unspecified surface separation; no fluid rate, recovery or water-recycle loop is represented. Open scene endpoint only. Invented static route in a schematic scene. No P&ID, fabricated pipe, selected joint, pressure, temperature, phase composition, flow, steam quality, treatment, integrity or operation is shown.

Route / External feedwater to generator

Hollow static relationship: External feedwater to generator. Invented static route in a schematic scene. No P&ID, fabricated pipe, selected joint, pressure, temperature, phase composition, flow, steam quality, treatment, integrity or operation is shown.

Direction / External feedwater to generator

Fixed reading arrow. It is not a flow calculation or operating direction instruction.

Route / Generator outlet to separator inlet

Hollow static relationship: Generator outlet to separator inlet. Invented static route in a schematic scene. No P&ID, fabricated pipe, selected joint, pressure, temperature, phase composition, flow, steam quality, treatment, integrity or operation is shown.

Direction / Generator outlet to separator inlet

Fixed reading arrow. It is not a flow calculation or operating direction instruction.

Route / Separator upper steam to injector boundary

Hollow static relationship: Separator upper steam to injector boundary. Invented static route in a schematic scene. No P&ID, fabricated pipe, selected joint, pressure, temperature, phase composition, flow, steam quality, treatment, integrity or operation is shown.

Direction / Separator upper steam to injector boundary

Fixed reading arrow. It is not a flow calculation or operating direction instruction.

Route / Separator lower liquid to open handling

Hollow static relationship: Separator lower liquid to open handling. Invented static route in a schematic scene. No P&ID, fabricated pipe, selected joint, pressure, temperature, phase composition, flow, steam quality, treatment, integrity or operation is shown.

Direction / Separator lower liquid to open handling

Fixed reading arrow. It is not a flow calculation or operating direction instruction.

Route / Producer to open surface-handling boundary

Hollow static relationship: Producer to open surface-handling boundary. Invented static route in a schematic scene. No P&ID, fabricated pipe, selected joint, pressure, temperature, phase composition, flow, steam quality, treatment, integrity or operation is shown.

Direction / Producer to open surface-handling boundary

Fixed reading arrow. It is not a flow calculation or operating direction instruction.