Production Enhancement

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    Hydraulic Fracturing
    A complete hydraulic fracturing workflow consists of fracture propagation modelling and simulation of fluid flow through the fractures.
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    The model grid is built with all reservoir petrophysical and geomechanical properties. 

    By using the same grid the seamless integration between static and dynamic modelling through automated workflows offers a less time-consuming and challenging process compared to traditional industry practices. Reservoir and fracture properties can be included in Assisted History Matching and Uncertainty Workflows.

    Hydraulic Fracturing
    Hydraulic Fracturing
    Hydraulic Fracturing
    Hydraulic Fracturing
    Hydraulic Fracturing
    Smart Completions
    Optimise asset production by incorporating subsurface inflow control technology to well modelling.

    Create and compare multiple designs in an intuitive user interface, incorporating data from your logs and grid for optimal location of completion elements.

    • SICDs, RCP-AICDs and subcritical control valves supported
    • Density and viscosity dependent pressure drop models
    • High resolution near wellbore modelling with LGRs

    tNavigator can simulate smart wells (ICD’s, AICD’s and MSW’s) faster than industry standard simulation technology by a factor of 4 to 100 times quicker on modern hardware.

    Smart Completions
    Smart Completions
    Smart Completions
    Smart Completions
    Enhanced Oil Recovery
    Maximise production from mature fields by applying state of the art enhanced recovery solutions in the reservoir.
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    Design, test and optimise complex EOR techniques on high resolution models without compromising runtime to make sound technical and investment decisions. Multiple processes supported in black oil, compositional and thermal models on a fully parallel numerical simulator.

    Enhanced Oil Recovery
    Enhanced Oil Recovery
    Enhanced Oil Recovery
    Waterflood Analysis
    Optimising your strong producing wells against the low performers is a critical study to maximising the economic value of your field.

    A combination of explicit and implicit analysis allow you to perform an efficient injection study with improved understanding of waterflood behaviour, including:

    • Streamlines visualisation 
    • Drainage matrix, graphs and table
    • Tracer simulation
    • Water injection optimisation
    • Analytical and numerical aquifers

     

    Waterflood Analysis
    Waterflood Analysis