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Finite-volume simulation of capillary-dominated flow in matrix-fracture systems using interface conditions

机译:使用界面条件的基质裂缝系统中毛细管主导流量的有限体积模拟

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In numerical simulations of multiphase flow and transport in fractured porous media, the estimation of the hydrocarbon recovery requires accurately predicting the capillary-driven imbibition rate of the wetting phase initially present in the fracture into the low-permeability matrix. In the fully implicit finite-volume scheme, this entails a robust methodology that captures the capillary flux at the interface between the matrix and the fracture even when very coarse cells are used to discretize the matrix. Here, we investigate the application of discrete interface conditions at the matrix-fracture interface to improve the accuracy of the flux computation without relying on extreme grid refinement. In particular, we study the interaction of the upwinding scheme with the discrete interface conditions. Considering first capillary-dominated spontaneous imbibition and then forced imbibition with viscous, buoyancy, and capillary forces, we illustrate the importance of the interface conditions to accurately capture the matrix-fracture flux and correctly represent the flow dynamics in the problem.
机译:在裂缝多孔介质中的多相流动和转运的数值模拟中,烃恢复的估计需要精确地预测最初存在于骨折中的湿度相的毛细血管驱动的毛细血管驱动的嗜睡率入低渗透性基质。在完全隐含的有限卷方案中,这需要一种鲁棒方法,即使使用非常粗细的电池以离散矩阵,即使在使用非常粗糙的细胞时也捕获矩阵和裂缝之间的界面处的毛细血管通量。在这里,我们研究了离散接口条件在矩阵骨折界面处的应用,提高了磁通计计算的准确性,而无需依赖极端电网细化。特别是,我们研究了Upwinding方案与离散接口条件的相互作用。考虑第一次毛细管主导的自发性吸收,然后用粘性,浮力和毛细管力强制吸收,我们说明了界面条件的重要性,以准确地捕获基质 - 骨折通量并正确代表问题的流动动态。

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