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Efficient generation of multi-scale random fields: A hierarchical approach

机译:多尺度随机字段的高效生成:一种分层方法

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This paper introduces a new methodology to generate numerically multi-scale random fields. The generation of numerical samples of random fields plays an important role in Monte Carlo simulation methods. We are concerned with porous media flow studies where random field generators are used widely as a tool to model rock heterogeneities for applications in hydrocarbon recovery and groundwater flow.rnReservoir rock properties such as permeability and porosity vary in space and may be characterized by their distributions. As the true distribution of these properties is unknown, we assume that they can be approximated by Gaussian (or transforms of Gaussian) random fields. In particular, we focus on correlated random fields with a power-law covariance structure.rnOur new method for the numerical generation of random fields uses a hierarchy of independent Gaussian variables defined on multiple length scales and is based on a theoretical construction of random fields described in Glimm and Sharp (J. Stat. Phys. 1991; 62(1-2):415-424). Numerical results are presented to show that the proposed method is accurate and numerically efficient.
机译:本文介绍了一种生成数值多尺度随机场的新方法。随机场数值样本的生成在蒙特卡洛模拟方法中起着重要作用。我们关注的是多孔介质流动研究,其中随机场发生器被广泛用作模拟岩石非均质性的工具,以用于烃采收和地下水流动.rn储层岩石特性(例如渗透率和孔隙率)在空间上有所不同,并可能以其分布为特征。由于这些属性的真实分布是未知的,因此我们假定它们可以由高斯(或高斯变换)随机场近似。特别是,我们关注具有幂律协方差结构的相关随机场。我们用于随机场数值生成的新方法使用了在多个长度尺度上定义的独立高斯变量的层次结构,并且基于描述的随机场的理论构造Glimm and Sharp(J. Stat。Phys。1991; 62(1-2):415-424)。数值结果表明,该方法是准确,高效的。

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