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A non-local two-phase flow model for immiscible displacement in highly heterogeneous porous media and its parametrization

机译:非均匀两相流模型在高度非均质多孔介质中不混溶的位移及其参数化

摘要

In this paper, we present an upscaled model for horizontal immiscible displacement in highly heterogeneous media. This type of heterogeneity can be found, for instance, in fractured rock, which consists of two flow domains, a mobile fracture and a virtually immobile matrix. We derive an upscaled double-continuum model capable of predicting flow in mobile-immobile domains using homogenization theory. The model consists of a flow equation for the saturation of displacing fluid in the fracture domain, and a capillary flow equation for saturation in the matrix, which are coupled via a source term. By linearizing capillary counter current flow in the matrix domain, we combine this system of equations into a non-local single-equation model for the fracture saturation, which can be interpreted as a multi-rate mass-transfer (MRMT) model for immiscible displacement. We discuss this simplification and the parametrization of the upscaled model equation from local hydraulic parameters obtained from rock samples and from knowledge of the average flow properties of the fracture network. We demonstrate its performance for predicting two-phase flow by considering a single fracture with imbibition into a rectangular matrix domain. The upscaled model is parameterized directly from geometry and hydraulic parameters of matrix and fracture of the reference model, which means that no parameters need to be fitted. We compare the detailed and upscaled models in terms of breakthrough curves for the displaced fluid at a control plane within the medium. Both the detailed numerical simulations and the upscaled model show a preasymptotic t - 1 / 2 scaling and a breakoff at the characteristic time scale for filling the matrix by counter current flow. © 2013 Elsevier Ltd.
机译:在本文中,我们提出了高度异构介质中水平不混溶位移的升级模型。这种异质性可以在例如裂隙岩石中找到,该裂隙岩石由两个流动域组成,一个活动裂缝和一个几乎不动的基质。我们推导出了一个高级的双连续谱模型,能够使用均质化理论预测移动固定领域的流量。该模型包括一个用于在裂缝域中驱替流体饱和的流动方程式和一个用于基质中饱和度的毛细管流动方程式,它们通过一个源项耦合。通过线性化矩阵域中的毛细管逆流,我们将该方程组组合到裂缝饱和的非局部单方程模型中,该模型可以解释为不混溶位移的多速率传质(MRMT)模型。 。我们将从岩石样本获得的局部水力参数以及裂缝网络的平均流量特性的知识中讨论简化模型方程的简化和参数化。我们通过考虑吸收到矩形矩阵域中的单个裂缝来证明其预测两相流的性能。直接从参考模型的基体的几何形状和水力参数以及参考模型的断裂参数化升级后的模型,这意味着不需要拟合参数。我们根据介质内控制平面上的驱替液的突破曲线比较了详细模型和放大模型。详细的数值模拟和放大的模型都显示了渐近的t-1/2缩放和在特征时间标度上的折断,以通过逆流填充矩阵。 ©2013爱思唯尔有限公司。

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