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Multilevel Monte Carlo methods for computing failure probability of porous media flow systems

机译:计算多孔介质流动系统失效概率的多级蒙特卡洛方法

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摘要

We study improvements of the standard and multilevel Monte Carlo method for point evaluation of the cumulative distribution function (failure probability) applied to porous media two-phase flow simulations with uncertain permeability. To illustrate the methods, we study an injection scenario where we consider sweep efficiency of the injected phase as quantity of interest and seek the probability that this quantity of interest is smaller than a critical value. In the sampling procedure, we use computable error bounds on the sweep efficiency functional to identify small subsets of realizations to solve highest accuracy by means of what we call selective refinement. We quantify the performance gains possible by using selective refinement in combination with both the standard and multilevel Monte Carlo method. We also identify issues in the process of practical implementation of the methods. We conclude that significant savings in computational cost are possible for failure probability estimation in a realistic setting using the selective refinement technique, both in combination with standard and multilevel Monte Carlo. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们研究了标准和多级蒙特卡罗方法的改进,用于累积分布函数(失效概率)的点评估,该方法适用于渗透率不确定的多孔介质两相流模拟。为了说明这些方法,我们研究了一种注入场景,在该场景中,我们将注入相的扫描效率视为目标数量,并寻找该目标数量小于临界值的概率。在采样过程中,我们使用扫描效率函数上的可计算误差范围来识别实现的小子集,以通过所谓的选择性优化来解决最高精度。我们通过结合标准和多级蒙特卡洛方法使用选择性优化来量化可能的性能提升。我们还在方法的实际实施过程中发现问题。我们得出的结论是,结合标准和多级蒙特卡洛方法,使用选择性优化技术在现实环境中进行故障概率估计时,可以显着节省计算成本。 (C)2016 Elsevier Ltd.保留所有权利。

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