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.
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.
MineFlo Brine Extraction
Design and modeling of brine extraction projects, covering everything from geological assessment to reservoir dynamics. Well design, pumping systems, and surface pipeline networks are modelled in an integrated fashion. Advanced optimisation capabilities can enhance project efficiency and resource recovery.
MineFlo Light Gas: Hydrogen / Helium
Specialised tool for modeling the extraction and transportation of light gases such as hydrogen and helium. Spans the breadth of reservoir characterisation, well design, and surface pipeline network configuration. Optimisation modules ensure maximum recovery, minimise leakage, and reduce operational costs.
MineFlo In Situ Leaching
Enables the design and modelling of in-situ leaching projects, from geological characterisation to fluid flow dynamics within the ore body. Supports well placement strategies, injection and recovery systems, and surface infrastructure layouts. Optimisation features can maximise metal recovery and minimise environmental impact
Mineflo Underground*
Enables modelling, optimisation, design, sequencing, and scheduling across a full suite of underground mining methods – including stoping, cave mining, room & pillar, and ring-blast operations. Improving safety, energy efficiency, and ore recovery. Model and plan open-pit mining operations, starting from geology and block models to mine design and production planning. Includes water management, slope stability analysis, haulage network design, and surface infrastructure planning. Optimisation modules are incorporated to improve scheduling, reduce operational costs, and maximise resource extraction.
MineFlo Open Pit*
Model and plan open-pit mining operations, starting from geology and block models to mine design and production planning. Includes water management, slope stability analysis, haulage network design, and surface infrastructure planning. Optimisation modules are incorporated to improve scheduling, reduce operational costs, and maximise resource extraction.
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Case Studies
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: Water Flood Optimisation
Petex: LNG deliverability
Petex: Dual-string gas-lifted field
Petex: Understanding Fault Seals in a North Sea Exploration Prospect