Rapid and accurate simulation of the In-situ Conversion Process using upscaled dynamic models

Journal of Petroleum Science and Engineering(2018)

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摘要
Numerical modeling of the In-situ Conversion Process (ICP) is a challenging endeavor involving non-isothermal multiphase flow, compositional PVT behavior, and chemical reactions that convert solid kerogen into light hydrocarbons and are tightly coupled to the temperature propagation. The objective of the reported work is to significantly accelerate the ICP simulations using fast upscaled dynamic models that deliver good prediction accuracy. We take advantage of the fluid- and heat-flow based local transmissibility upscaling techniques. A fully automatic scale-up workflow is scripted for pattern-scale ICP models, which generates upscaled models that are, in turn, simulated using a proprietary simulator. We demonstrate the consistency, accuracy, and efficiency of the upscaling workflow using a realistic pattern-scale ICP model.
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关键词
In-situ Conversion Process (ICP),Oil shale,Flow-based transmissibility upscaling,Unconventional oil,Reservoir simulation,Thermal recovery
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