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A Genetic Algorithm for Stochastic Inversion in Contaminant Subsurface Hydrology

机译:污染地下水文随机反演的遗传算法

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摘要

Identifying the spatial distribution of hydrological properties of aquifers is a key problem in subsurface hydrology. The aquifer structure plays an important role in contaminant transport. Identifying the properties (primarily the hydraulic conductivity) is essentially an inversion problem that is ill-posed, non-unique and computationally intensive by definition. In this work, the non-uniqueness of the inverse problem is tackled via a novel Genetic Algorithm approach combined with a geostatistical method (Sequential Indicator Simulations) for construction of realizations of properties spatial distributions, which are modeled as random. The Genetic Algorithm cross-over operator is based on a novel concept of pilot-planes: daughter realizations adopt pilot-planes from one of their parents. In addition, each aquifer realization is conditioned on the geological hard data and is constructed by sampling the facies distribution, evaluated by indicator variograms. The approach is illustrated in two test cases: a synthetic two-dimensional (2D) case and an actual three-dimensional (3D) case. The results have shown the ability of the proposed approach to generate a set of realizations, where each individual exhibits minor deviations from the measurements. Further, a comparison between the proposed approach and direct (Monte Carlo) approach shows that the Genetic Algorithm was able to generate an ensemble of solutions with a better fitting of the measurements than the direct approach by a significantly reduced computational effort.
机译:识别含水层水文特性的空间分布是地下水文学的关键问题。含水层结构在污染物输送中起着重要作用。识别特性(主要是水力传导率)本质上是一个反演问题,其定义不正确,不唯一且计算量大。在这项工作中,反问题的非唯一性是通过一种新颖的遗传算法方法与地统计学方法(顺序指示器模拟)相结合来解决的,该属性用于构造以随机为模型的属性空间分布。遗传算法交叉算子基于飞行员平面的新概念:子代实现采用其父代之一的飞行员平面。此外,每个含水层的实现都以地质硬数据为条件,并通过对岩相分布进行采样(由指示变量图进行评估)来构造。在两个测试案例中说明了该方法:一个合成的二维(2D)案例和一个实际的三维(3D)案例。结果表明,所提出的方法具有生成一组实现的能力,其中每个人的测量值均显示出较小的偏差。此外,所提出的方法与直接方法(蒙特卡洛方法)之间的比较表明,与直接方法相比,遗传算法能够通过显着减少的计算工作量生成具有比直接方法更好的测量拟合的整体解决方案。

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  • 来源
    《Ground water》 |2019年第5期|704-717|共14页
  • 作者

    Moreno Ziv; Paster Amir;

  • 作者单位

    Tel Aviv Univ Fac Engn Sch Mech Engn IL-69978 Tel Aviv Israel;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
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