All Products

Explore our comprehensive portfolio of measurement technology, combining sensor, software, and autonomous solutions.

Search or filter all product below

Filters
23 Items
Sort by
2D Kinematic Modelling

2D Kinematic Modelling

The 2D Kinematic Modelling module enables you to build, balance, restore and analyse cross-sections at local and regional scales, helping you understand how geological time influences present-day structure. It uses kinematic algorithms to restore deformation while maintaining line-length and area balance, defining a geologically consistent undeformed state and enabling assessment of structural uncertainty and evolutionary feasibility.

3D Kinematic Modelling

3D Kinematic Modelling

3D restoration, forward modelling and validation of geological models using structural geology principles. The 3D Kinematic Modelling module uses advanced kinematic algorithms to restore complex structures, test alternative scenarios, and reduce uncertainty in structurally complex areas. It enables forward and reverse modelling through time in 3D, while maintaining area and volume balance, supporting realistic model construction across all major tectonic settings.

Conductor

Conductor

Designed to unify disparate engineering applications into a single digitally communicating ecosystem, conductor provides vendor-neutral, asset-wide integration, eliminating silos and seamlessly integrating 3rd party software, from mineral mapping through to point of sale. Our unique visual workflows enable a user with no coding knowledge the ability to implement complex logic for whole asset model management. This, in turn, enables collaborative decision-making across complex projects without losing any data or crowding the interface.

Digital Field Mapping

Digital Field Mapping

Digital field mapping apps for smartphones and tablets enable geologists to collect field data and directly build 3D models in MOVE. Petex offers FieldMOVE Clino for smartphones and FieldMOVE for larger touchscreen tablets (iOS and Android), both designed by geologists for geologists with intuitive, familiar interfaces and built-in help and user guides to support quick adoption and ease of use in the field.

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 Response Modelling

Fault Response Modelling

Boundary element modelling of fault displacement and geomechanical response in surrounding fracture systems.The Fault Response Modelling module validates structural interpretations by simulating stress perturbations around faults and identifying highly fractured zones. It uses a boundary element method with triangular elastic dislocations to efficiently model complex faulting scenarios and assess deformation.Resulting stress and strain fields—alongside outputs from MOVE’s Strain Capture tools—are used to predict fracture orientation and evaluate failure potential by resolving shear and normal stress components across faults and fractures.

Fracture Modelling

Fracture Modelling

The Fracture Modelling module uses deformation calculated at incremental time steps as proxies to model fracture development and system properties through time. It combines sequential restoration and forward modelling to link observed fractures with modelled deformation, helping identify the causes of fracturing and build geologically realistic DFN models. This enables prediction into areas without direct observations using geological proxies, including static and dynamic attributes. The module is a key tool for geoscientists working in fractured rock settings, supporting critical decisions in reservoir simulation, gas storage, fracking, mining and geotechnical engineering.

Gap

Gap

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

Gap Transient

Gap Transient

GAP Transient integrates transient multi-phase flow modelling with IPM capabilities, bringing specialist flow studies into everyday field management, optimisation, forecasting, and development workflows.

Geomechanical Modelling

Geomechanical Modelling

The Geomechanical Modelling module applies physical laws of motion and elastic properties to model 3D deformation, calculating forces on point masses to reproduce heterogeneous strain behaviour.It enables users to test multiple scenarios with varying mechanical properties, anisotropy, pinning and fault displacement settings, with each case saved for rapid sensitivity analysis. Strain outputs generated during modelling can be directly used as inputs for Fracture Modelling, supporting an integrated workflow from deformation to fracture prediction.

IFM

IFM

Petex made a strategic decision to move this integrated field studies concept forward and to develop real time "IPM Field Management", integrating the field modelling tools with online Surveillance monitoring, Automation and client field and business management Workflows. IFM was commercialised in 2006 and has the largest growth and corporate deployment across the oil industry today.

Intelligent Mine

Intelligent Mine

A real-time decision-support platform that transforms raw operational data into actionable insights, enabling proactive management and continuous optimisation.A powerful environment for operational visualisation and optimisation, with applications extending into mining, IntelligentMine offers operators unsurpassed levels of predictive data.

IVM

IVM

Integrated Visualisation Management (IVM) is a software solution that bridges the gap between raw data sources and sophisticated Petroleum Engineering analytical tools, allowing engineers, operators, and management to easily organize and visualize data trends.Through features like advanced trending, XY plots, and Horner plots, the platform provides rapid analytical insights that often enable teams to make decisions and take corrective actions immediately. When deeper analysis is required, IVM simplifies the workflow by allowing users to graphically select, condition, and seamlessly export the necessary data into more advanced modeling software.

MBAL

MBAL

MBAL enables reservoir analysis throughout the full field life, from early appraisal to mature fields, using minimal data such as PVT and cumulative production.

Mineflo

Mineflo

A unified platform for subsurface modelling, production forecasting, transport network optimisation across mining, brine, hydrogen and gas operations.MineFlo acts as the backbone for the full suite of applications, linking these tools through automated workflows. With Mineflo you can run coupled simulations, share data seamlessly and execute optimisation loops without manual intervention. This integration reduces modelling time, enhances accuracy and supports faster real-time decision making.

Model Catalogue

Model Catalogue

This is a file auditing, management and model version control tool. It provides a structured archive for storing and retrieving IPM and field model data, allowing engineers to maintain a complete version history throughout a model’s lifecycle. The Model Catalogue Explorer offers a simple, intuitive interface similar to Windows Explorer.The Model Catalogue gives engineers instant visibility into critical model information, including the latest model version, update history, changes made, and ownership responsibilities.

Move Core

Move Core

Providing a stand-alone environment for building geological models and supporting all specialist modules, including 2D/3D Kinematic, Geomechanical, Fracture, Fault Response, Fault Analysis and Stress Analysis. It integrates geo-referenced 2D and 3D views and over 100 data formats in a single workspace, enabling the construction of geologically consistent cross-sections and 3D models using manual and automated tools.The environment supports best-practice modelling, with built-in validation and analysis tools such as cross plots, stereonets, rose diagrams and property tables. It is used by geoscientists and engineers to maximise the value of geological data across a wide range of settings.

Openserver

Openserver

OpenServer is the Petex API protocol that allows third-party tools such as Excel and Visual Basic to access IPM functions, turning IPM applications into external calculation engines. It enables automation of data transfer, model inputs, and calculations to streamline repetitive tasks and reduce engineering workload. For larger workflows, RESOLVE Visual Workflows are recommended instead.

Prosper

Prosper

PROSPER is Petex’s well and pipeline modelling application, designed for nodal analysis across oil, gas, and condensate systems. By integrating inflow, outflow, and thermodynamic modelling in a single platform, it enables engineers to design, analyse, and optimise well performance efficiently. Used across fields worldwide, PROSPER supports both planning and operational workflows with validated models and an intuitive, task-focused interface.

PVTP

PVTP

The IPM suite enables fully integrated production systems by removing boundaries between reservoir, well, and surface models.

Resolve

Resolve

RESOLVE is Petex’s integrated engineering platform, enabling engineers to connect, automate and optimise complex upstream systems in one dynamic environment — without coding.

Reveal

Reveal

REVEAL is an integrated reservoir simulator that combines conventional reservoir modelling with specialised studies such as EOR, thermal fracturing, production chemistry, and solids transport. It enables fully coupled reservoir and production analysis, imports existing models, and links with surface networks via RESOLVE for integrated field optimisation.

Stress Analysis

Stress Analysis

3D evaluation of present-day and palaeo stress states to assess fault and fracture slip, stability and failure potential.The Stress Analysis module enables rapid visualisation and assessment of 3D stress conditions and their impact on fault and fracture behaviour. It supports scenario testing across reservoir, mining and engineering applications, helping to define likely failure envelopes for key structural features.Users can evaluate seal integrity and leakage risk, assess mineralisation potential, and predict geotechnical failure by modelling principal stresses and pressure profiles with depth, including hydrostatic, pore and lithostatic effects.