Gap

Gap

Multiphase network modelling and optimisation

GAP is designed to eliminate artificial boundary conditions in reservoir, well and surface network models, through the creation of integrated models using Petex tools.

Integrated Production and Injection Networks

GAP models multiphase production networks across multiple wells with different PVT properties, accounting for interactions such as back pressure between wells. As one of the industry’s most advanced steady-state multiphase network optimisers, it helps engineers maximise oil and gas production worldwide.

Equations Based Solver

GAP uses a proprietary equation-based solver to model full-field hydrocarbon systems by balancing pressure, flow, and temperature across integrated networks. Designed specifically for oilfield applications, it dynamically evaluates system physics and delivers industry-leading solving speeds.

Non-Linear Optimisation

GAP uses advanced global non-linear optimisation algorithms to maximise hydrocarbon recovery across integrated systems. Its proprietary technology automatically selects the most suitable optimisation approach, helping users identify ideal operating settings while meeting field constraints.

Rule Based Constraints

For long-term forecasting and planning, GAP uses rule-based functionality to evaluate production strategies while adhering to operational constraints. Fast calculations enable rapid forecasting and optimisation of factors such as artificial lift performance.

Well Performance

GAP evaluates and optimises well performance over time by modelling interactions across the entire production network. It supports artificial lift systems, intervention planning, and flow assurance analysis to assess performance throughout a well’s lifecycle.

Flow Assurance

GAP identifies and analyses flow assurance issues such as slugging, liquid loading, wax formation, and hydrates across production networks. Integrated workflows provide insights that support operational decisions and long-term field management.

Advanced PVT Handling

GAP supports multiple PVT descriptions across reservoirs, wells, and surface systems, enabling seamless integration of compositional and black oil models. This combined approach delivers more accurate fluid representation while retaining the strengths of both methods.

Unconventionals

GAP extends its modelling capabilities to unconventional reservoirs including coal bed methane, shale, tight gas, and heavy oil. It captures production and dewatering behaviour while analysing multiphase flow throughout wells and surface networks.

Surface Equipment Modelling

GAP models key production equipment including compressors and pumps, enabling users to assess performance as operating conditions evolve. This supports the design and optimisation of complex systems in challenging production environments.

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IPM Suite

Case Studies

Petex: North Sea – Surveillance and Allocation

Petex: North Sea – Surveillance and Allocation

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Petex: Large onshore ESP-lifted field

Petex: Large onshore ESP-lifted field

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Petex: Allocation and Flow Assurance - HPHT Field

Petex: Allocation and Flow Assurance - HPHT Field

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Petex: Predicting Fracture Systems in an Unconventional US Reservoir

Petex: Predicting Fracture Systems in an Unconventional US Reservoir

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Petex: Reducing Exploration Risk in the Barents Sea

Petex: Reducing Exploration Risk in the Barents Sea

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Petex: Increasing Production While Reducing Gas Lift Consumption SPE-136126-MS

Petex: Increasing Production While Reducing Gas Lift Consumption SPE-136126-MS

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Petex: Delivering an 11,000 BLPD Production Increase in a Mature Offshore Field SPE-215330-MS

Petex: Delivering an 11,000 BLPD Production Increase in a Mature Offshore Field SPE-215330-MS

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Petex: Turning Hundreds of Wells into a Connected Decision-Making System SPE-214734-MS

Petex: Turning Hundreds of Wells into a Connected Decision-Making System SPE-214734-MS

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Petex: Understanding Long-Term Recovery in a Mature Gas Field

Petex: Understanding Long-Term Recovery in a Mature Gas Field

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Petex: Designing CO₂ Injection Wells for the Morecambe Net Zero Project SPE-226811-MS

Petex: Designing CO₂ Injection Wells for the Morecambe Net Zero Project SPE-226811-MS

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Petex: Improving Reservoir Understanding in a Mature CO₂ Flood Project

Petex: Improving Reservoir Understanding in a Mature CO₂ Flood Project

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Petex: Understanding Salt Tectonics in the Red Sea

Petex: Understanding Salt Tectonics in the Red Sea

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Petex: Water Flood Optimisation

Petex: Water Flood Optimisation

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Petex: LNG deliverability

Petex: LNG deliverability

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Petex: Dual-string gas-lifted field

Petex: Dual-string gas-lifted field

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Petex: Understanding Fault Seals in a North Sea Exploration Prospect

Petex: Understanding Fault Seals in a North Sea Exploration Prospect

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