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Fast computation of arrival times in heterogeneous media

机译:快速计算异构媒体中的到达时间

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We continue the work that was initiated in (K.H. Karlsen, K.-A. Lie, and N.H. Risebro. A fast marching method for reservoir simulation. Comp. Geo., 4(2) (2000)185-206) on a marching method for simulating two-phase incompressible immiscible flow of water and oil in a porous medium. We first present an alternative derivation of the marching method that reveals a strong connection to modern streamline methods. Then, through the study of three numerical test cases we present two deficiencies: (ⅰ) the original marching algorithm does not always compute the correct solution of the underlying difference equations, and (ⅱ) the method gives largely inaccurate arrival times in the presence of large jumps within the upwind difference stencil. As a remedy of the first problem, we present a new advancing-front method, which is faster than the original marching method and guarantees a correct solution of the underlying discrete linear system. To cure the second problem, we present two adaptive strategies that avoid the use of finite-difference stencils containing large jumps in the arrival times. The original marching method was introduced as a fast tool for simulating two-phase flow scenarios in heterogeneous formations. The new advancing-front method has limited applicability in this respect, but may rather be used as a fast and relatively accurate method for computing arrival times and derived quantities in heterogeneous media.
机译:我们继续进行(KH Karlsen,K.-A。Lie和NH Risebro。一种用于油藏模拟的快速行进方法。Comp。Geo。,4(2)(2000)185-206)。模拟多孔介质中水和油的两相不可压缩不混溶流动的方法。我们首先提出行进方法的另一种派生方法,它揭示了与现代流线型方法的紧密联系。然后,通过研究三个数值测试案例,我们提出了两个缺陷:(ⅰ)原始行进算法并不总是能够计算出基础差分方程的正确解,并且(ⅱ)该方法在存在以下情况时给出的到达时间大大不准确迎风差异模具内的大跳动。作为第一个问题的补救措施,我们提出了一种新的先行方法,该方法比原始行进方法要快,并且可以保证底层离散线性系统的正确解。为了解决第二个问题,我们提出了两种自适应策略,这些策略避免使用包含到达时间大跳动的有限差分模板。最初的行进方法是一种快速工具,用于模拟非均质地层中的两相流情​​况。新的先行方法在这方面的适用性有限,但可以用作计算异质媒体中到达时间和派生数量的快速且相对准确的方法。

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