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Completions, Artificial Lift & Intervention

Downhole completion and production-support requirements, including equipment used to access and maintain existing wells.

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Downhole completion and production-support requirements, including equipment used to access and maintain existing wells.

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Understanding completions, artificial lift & intervention

Compare the functions and applications in this category, then use the catalogue filters to narrow your requirement. Each topic includes detailed selection information and an enquiry form.

Completion packers and downhole valves

Completion packers isolate an annular space within the well, while downhole valves provide selected flow-control or protective functions. Both form part of a completion architecture with specific mechanical and control interfaces.

Production and injection completions use these components to manage intervals and flow paths. The completion designer defines the required arrangement and operating envelope.

Electric submersible and rod lift systems

Electric submersible pump systems use downhole electrically driven pumping assemblies. Rod-lift systems transmit mechanical motion from surface equipment to a downhole pump. Both are artificial-lift methods with different well and surface interfaces.

Wells that require additional lifting energy may use these systems. Production rate, fluid properties, well geometry and available power influence the selected arrangement.

Gas lift and progressing cavity systems

Gas lift introduces gas through a designed completion arrangement to assist production. Progressing cavity pumps use rotor-and-stator geometry to move fluid. These artificial-lift methods have different energy sources and operating characteristics.

Production wells use these systems where the well performance and available infrastructure support the selected lift design. Solids, viscosity and fluid compatibility are relevant inputs.

Wireline and coiled tubing tools

Wireline tools are conveyed on a line for selected measurements or intervention work. Coiled tubing provides a continuous tubular conveyance and fluid path. The chosen system determines tool-string and pressure-control interfaces.

Well diagnostics, cleanout and other approved interventions use different conveyed tools. Equipment selection begins with the well geometry and intervention objective.

Stimulation and fracturing equipment

Stimulation equipment supports an approved treatment intended to change a well's productive behavior. Fracturing packages may include pumping, blending and fluid-handling assemblies, with pressure-containing components selected for the treatment programme.

Well stimulation projects use equipment matched to the fluid, proppant and operating duty. Surface layout and handling responsibilities influence the complete package.

Liner hangers and running tools

Liner hangers suspend a liner inside a parent casing string. Running tools provide the compatible installation interface, with associated setting and sealing components defined by the selected liner system.

Well construction and completion programmes use liner systems to extend tubular coverage through selected intervals. The well geometry and installation design establish the equipment arrangement.

Sand control screens and gravel pack tools

Sand-control screens limit entry of formation particles into a well's production path. Gravel-pack systems add a designed granular barrier and associated completion tools. The selected approach depends on formation data and completion design.

Completions in formations with sand-production concerns may use these systems. Fluid properties, particle-size information and well geometry are important design inputs.

Perforating systems and accessories

Perforating systems establish designed communication between a completed well and selected formation intervals. Equipment and accessories are chosen within a specialist completion programme, with compatible conveyance and well interfaces.

Cased-hole completion and selected intervention programmes use perforating services. The operator and responsible specialist define the equipment and execution requirements for the actual well.

Intelligent completion and inflow control

Intelligent completions combine downhole measurement and selected control functions within a completion system. Inflow-control devices manage flow distribution, while remotely controlled valves may allow adjustment of individual intervals.

Wells with multiple producing zones or specific reservoir-management needs may use these systems. The completion architecture determines monitoring, control and communication requirements.

Fishing, milling and wellbore cleanup tools

Fishing tools recover or engage material remaining in a well. Milling and cleanup tools address defined obstructions or deposits. The suitable tool depends on the actual condition, geometry and intervention objective.

Well repair, workover and abandonment programmes may require recovery or cleanout assemblies. Available access and conveyance influence the possible equipment arrangements.

Plunger lift and jet pump systems

Plunger-lift systems use a travelling plunger within a configured production cycle. Jet pumps transfer energy from a power-fluid stream to the produced stream. These are distinct artificial-lift arrangements with different surface requirements.

Selected producing wells use these lift methods when well performance and available infrastructure support the design. Fluids, geometry and pressure data are key inputs.