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Permeability determination in tight rock sample using novel method based on partial slip modelling and X-ray tomography data

机译:基于局部滑移建模和X射线断层扫描数据的新方法,使用新型方法渗透性测定

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Purpose - The purpose of the paper was the application of computational fluid dynamics (CFD) techniques in fluid flow using Maxwell's equation for partial slip modelling, estimating the flow parameters, and selecting tangential momentum accommodation coefficient (TMAC) for tight rock samples in permeability calculations. Design/methodology/approach - The paper presents a numerical analysis of fluid flow in a low-porosity rock sample by using CFD. Modelling results allowed to determine mass flow rates in a rock sample and to calculate permeability values using a modified Darcy's equation. Three-dimensional (3D) geometrical model of rock sample generated using computed X-ray tomography was used in the analysis. Steady-state calculations were carried out for defined boundary conditions in the form of pressure drop. The simulations were applied taking into account the slip phenomenon described by Maxwell's slip model and TMAC. Findings Values of permeability were calculated for different values of TMAC, which vary from 0 to 1. Results in the form of gas mass flow rates were compared with the measured value of permeability for rock sample, which confirmed the high accuracy of the presented model. Practical implications - Calculations of fluid flow in porous media using CFD can be used to determine rock samples' permeability. In slip flow regime, Maxwell's slip model can be applied and the empirical value of TMAC can be properly estimated. Originality/value - This paper presents the usage of CFD, Maxwell's equation for partial slip modelling, in fluid flow mechanism for tight rock samples. 3D geometric models were generated using created preprocessor (poROSE software) and applied in the raw form for simulation.
机译:目的 - 本文的目的是使用Maxwell等式进行局部滑移建模,估计流动参数的流体流动中的计算流体动力学(CFD)技术,并选择渗透性计算中的紧密岩石样本的切向动量容纳系数(TMAC) 。设计/方法/方法 - 本文通过使用CFD提出了低孔隙岩样品中流体流动的数值分析。建模结果允许确定岩石样品中的质量流量,并使用改进的达西方程计算渗透率值。在分析中使用了使用计算的X射线层析造影产生的岩石样品的三维(3D)几何模型。对压降形式的定义边界条件进行稳态计算。考虑到Maxwell滑动模型和TMAC描述的滑动现象来应用模拟。计算出渗透率的结果对于不同的TMAC值,其改变为0至1.导致气体质量流量的形式与岩石样品的渗透率的测量值进行比较,这证实了所呈现的模型的高精度。实际意义 - 使用CFD的多孔介质中流体流动的计算可用于确定岩石样本的渗透性。在滑动流状态下,可以应用Maxwell的滑动模型,可以正确估计TMAC的经验值。原创性/价值 - 本文介绍了CFD,Maxwell等式的部分滑移建模,流体流动机制,用于紧密岩石样品。使用创建的预处理器(POROSE软件)生成3D几何模型,并以原始表单应用于模拟。

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