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A Realistic Transport Model with Pressure-Dependent Parameters for Gas Flow in Tight Porous Media with Application to Determining Shale Rock Properties

机译:致密多孔介质中气体流动的压力依赖参数的真实输运模型及其在确定页岩性质中的应用

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摘要

A nonlinear transport model for single-phase gas flow in tight porous media is developed. The model incorporates many important physical processes that occur in such porous systems: continuous flow, transition flow, slip flow, Knudsen diffusion, adsorption and desorption into and out of the rock material, and a correction for high flow rates. This produces a nonlinear advection-diffusion type of partial differential equation with pressure-dependent model parameters and associated compressibility coefficients, and highly nonlinear apparent convective flux (velocity) and apparent diffusivity. A key finding is that all model parameters should be kept pressure dependent for the best results. An application is to the determination of rock properties, such as porosity and permeability, by history matching of the simulation results to data from pressure-pulse decay tests in a rock core sample (Pong et al. in ASME Fluids Eng Div 197:51-56, 1994).
机译:建立了致密多孔介质中单相气流的非线性传输模型。该模型包含了发生在此类多孔系统中的许多重要物理过程:连续流,过渡流,滑流,Knudsen扩散,进出岩石材料的吸附和解吸,以及对高流速的修正。这将产生非线性对流扩散型偏微分方程,该方程具有与压力有关的模型参数和相关的可压缩性系数,以及高度非线性的表观对流通量(速度)和表观扩散率。一个关键的发现是,所有模型参数都应保持压力依赖性,以获得最佳结果。通过将模拟结果与岩心样品中压力脉冲衰减测试的数据进行历史匹配,可以确定岩石的性质,例如孔隙率和渗透率(Pong等人在ASME Fluids Eng Div 197:51- 1994年第56号)。

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