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A new treatment of capillarity to improve the stability of IMPES two-phase flow formulation

机译:一种改善毛细作用的新方法以改善IMPES两相流配方的稳定性

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In this paper, we present an efficient numerical method for two-phase immiscible flow in porous media with different capillarity pressures. In highly heterogeneous permeable media, the saturation is discontinuous due to different capillary pressure functions. One popular scheme is to split the system into a pressure and a saturation equation, and to apply IMplicit Pressure Explicit Saturation (IMPES) approach for time stepping. One disadvantage of IMPES is instability resulting from the explicit treatment for capillary pressure. To improve stability, the capillary pressure is usually incorporated in the saturation equation which gradients of saturation appear. This approach, however, does not apply to the case of different capillary pressure functions for multiple rock-types, because of the discontinuity of saturation across rock interfaces. In this paper, we present a new treatment of capillary pressure, which appears implicitly in the pressure equation. Using an approximation of capillary function, we substitute the implicit saturation equation into the pressure equation. The coupled pressure equation will be solved implicitly and followed by the explicit saturation equation. Five numerical examples are provided to demonstrate the advantages of our approach. Comparison shows that our proposed method is more efficient and stable than the classical IMPES approach.
机译:在本文中,我们提出了一种有效的数值方法,用于在毛细压力不同的情况下多孔介质中的两相不混溶流动。在高度异质的渗透介质中,由于毛细管压力函数不同,饱和度是不连续的。一种流行的方案是将系统分为压力方程和饱和方程,并应用隐式压力显式饱和(IMPES)方法进行时间步进。 IMPES的一个缺点是对毛细血管压力的显式处理导致不稳定。为了提高稳定性,通常将毛细管压力合并到饱和方程中,出现饱和梯度。但是,这种方法不适用于多种岩石类型的毛细管压力函数不同的情况,因为岩石界面的饱和度不连续。在本文中,我们提出了一种新的毛细管压力处理方法,该方法隐式出现在压力方程中。使用毛细管函数的近似值,我们将隐式饱和方程代入压力方程。耦合压力方程将被隐式求解,然后是显式饱和方程。提供了五个数值示例来证明我们方法的优势。比较表明,我们提出的方法比经典的IMPES方法更有效,更稳定。

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