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Pressure dynamic analysis of low permeability reservoirs with deformed media

机译:变形介质低渗透油藏压力动态分析

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In the traditional well test models, the quadratic gradient term of nonlinear partial differential equation was neglected according to the assumption of slightly compressible fluid, which could lead to error when the well test time was too long. As time went by, the fluid flowing boundary of low permeability reservoirs extended outwards continuously. In order to study the flowing law of low permeability reservoirs with deformed media, the flow model of low permeability reservoirs of deformed media was built, which considered the influence of starting pressure gradient, moving boundary and quadratic gradient term. The numerical solution of the flow model was obtained by the fully implicit finite difference method. The pressure dynamic curves were drawn to analyse the seepage law of different starting pressure gradient, deformed media and moving boundary. The influence of the quadratic gradient term on the pressure dynamic curves was analyzed. The results could help people understand the seepage mechanism of low permeability reservoirs and provide the theoretical basis for exploring the low permeability reservoirs.
机译:在传统的试井模型中,非线性的偏微分方程的二次梯度项根据流体可压缩性的假设而被忽略,当试井时间过长时,可能会导致误差。随着时间的流逝,低渗透储层的流体流动边界连续向外延伸。为了研究含变形介质的低渗储层的渗流规律,建立了含变形介质的低渗储层的渗流模型,其中考虑了起始压力梯度,运动边界和二次梯度项的影响。通过完全隐式有限差分法获得了流动模型的数值解。绘制了压力动态曲线,以分析不同起始压力梯度,变形介质和运动边界的渗流规律。分析了二次梯度项对压力动态曲线的影响。研究结果可帮助人们了解低渗油藏的渗流机理,为低渗油藏的勘探提供理论依据。

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