Fault Analysis
Fault Analysis
The Fault Analysis module enables rapid evaluation of throw distribution, across-fault juxtaposition and sealing capacity in 3D, supported by statistical analysis of displacement and scaling relationships to validate geological interpretations.
Integrated with MOVE’s 3D Kinematic Modelling and Stress Analysis workflows, it provides a time-based view of fault evolution, helping identify potential baffles or conduits during hydrocarbon migration and assess fault sealing behaviour in mineral systems. Fault history diagrams support quick temporal analysis of fault development and seal potential.
Fault Analysis
The Fault Analysis module enables rapid evaluation of throw distribution, across-fault juxtaposition and sealing capacity in 3D, supported by statistical analysis of displacement and scaling relationships to validate geological interpretations.
Integrated with MOVE’s 3D Kinematic Modelling and Stress Analysis workflows, it provides a time-based view of fault evolution, helping identify potential baffles or conduits during hydrocarbon migration and assess fault sealing behaviour in mineral systems. Fault history diagrams support quick temporal analysis of fault development and seal potential.
Fault Analysis
Create fault cut-off lines using hanging wall and footwall trim and inclusion distances unique per side of fault.
Calculate and visualize heave polygons for all faults and horizons in a model.
Plot 3D throw colour maps and evaluate throw distributions using fault displacement charts.
Plot a range of 3D seal proxy and juxtaposition colour maps including:
Shale Gouge Ratio
Shale Smear Factor
Probabilistic Shale Smear Factor
Clay Smear Potential
Permeability
Hydrocarbon Column Height
Construct seal proxy diagrams, filter diagrams to show only areas of interest (e.g. SGR on Sand-Sand juxtapositions) and estimate surface areas.
Construct Fault Triangle diagrams to rapidly evaluate sealing potential from well data. Incorporate hanging wall thickness variations or use two wells for more accurate analysis of growth faults.
Rapidly restore fault displacement and physical compaction through time using Fault History diagrams to evaluate temporal fault displacement distributions and sealing capacity.
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Case Studies
Petex: Water Flood Optimisation
Petex: North Sea – Surveillance and Allocation
Petex: Large onshore ESP-lifted field
Petex: Allocation and Flow Assurance - HPHT Field
Petex: Predicting Fracture Systems in an Unconventional US Reservoir
Petex: Reducing Exploration Risk in the Barents Sea
Petex: Increasing Production While Reducing Gas Lift Consumption SPE-136126-MS
Petex: Delivering an 11,000 BLPD Production Increase in a Mature Offshore Field SPE-215330-MS
Petex: Turning Hundreds of Wells into a Connected Decision-Making System SPE-214734-MS
Petex: Understanding Long-Term Recovery in a Mature Gas Field
Petex: Designing CO₂ Injection Wells for the Morecambe Net Zero Project SPE-226811-MS
Petex: Improving Reservoir Understanding in a Mature CO₂ Flood Project
Petex: Understanding Salt Tectonics in the Red Sea
Petex: LNG deliverability
Petex: Dual-string gas-lifted field
Petex: Understanding Fault Seals in a North Sea Exploration Prospect