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Particle Swarm Optimization for inverse modeling of solute transport in fractured gneiss aquifer

机译:粒子群算法在片麻片岩含水层溶质运移反演中的应用

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摘要

Particle Swarm Optimization (PSO) has received considerable attention as a global optimization technique from scientists of different disciplines around the world. In this article, we illustrate how to use PSO for inverse modeling of a coupled flow and transport groundwater model (MODFLOW2005-MT3DMS) in a fractured gneiss aquifer. In particular, the hydroPSO R package is used as optimization engine, because it has been specifically designed to calibrate environmental, hydrological and hydrogeological models. In addition, hydroPSO implements the latest Standard Particle Swarm Optimization algorithm (SPSO-2011), with an adaptive random topology and rotational invariance constituting the main advancements over previous PSO versions. A tracer test conducted in the experimental field at TU Bergakademie Freiberg (Germany) is used as case study. A double-porosity approach is used to simulate the solute transport in the fractured Gneiss aquifer. Tracer concentrations obtained with hydroPSO were in good agreement with its corresponding observations, as measured by a high value of the coefficient of determination and a low sum of squared residuals. Several graphical outputs automatically generated by hydroPSO provided useful insights to assess the quality of the calibration results. It was found that hydroPSO required a small number of model runs to reach the region of the global optimum, and it proved to be both an effective and efficient optimization technique to calibrate the movement of solute transport over time in a fractured aquifer. In addition, the parallel feature of hydroPSO allowed to reduce the total computation time used in the inverse modeling process up to an eighth of the total time required without using that feature. This work provides a first attempt to demonstrate the capability and versatility of hydroPSO to work as an optimizer of a coupled flow and transport model for contaminant migration.
机译:作为一种全球优化技术,粒子群优化(PSO)已受到来自世界各地不同学科的科学家的极大关注。在本文中,我们说明了如何在裂片麻岩含水层中使用PSO进行耦合流动与运输地下水耦合模型(MODFLOW2005-MT3DMS)的逆向建模。特别是,hydroPSO R软件包被用作优化引擎,因为它是专门为校准环境,水文和水文地质模型而设计的。此外,hydroPSO实施了最新的标准粒子群优化算法(SPSO-2011),具有自适应随机拓扑和旋转不变性,这构成了以前PSO版本的主要进步。在案例研究中,在德国贝加卡迪米德·弗赖贝格工业大学的实验场中进行了示踪剂测试。使用双孔隙度方法模拟裂隙片麻岩含水层中的溶质运移。用hydroPSO获得的示踪剂浓度与其相应的观察结果高度吻合,这通过测定系数的高值和残差平方和的低而测得。 hydroPSO自动生成的几个图形输出提供了有用的见解,可用于评估校准结果的质量。发现hydroPSO需要少量的模型运行才能达到全局最优范围,并且被证明是校准裂缝性含水层中溶质随时间推移运动的有效且高效的优化技术。另外,hydroPSO的并行功能允许将逆建模过程中使用的总计算时间减少到不使用该功能所需总时间的八分之一。这项工作提供了首次尝试来证明hydroPSO能够作为污染物迁移的耦合流动和传输模型的优化器而工作。

著录项

  • 来源
    《Journal of Contaminant Hydrology》 |2014年第8期|285-298|共14页
  • 作者单位

    Institute for Geology, Technische Universitaet Bergakademie Freiberg, Freiberg, Germany;

    Water Resources Unit, Institute for Environment and Sustainability, Joint Research Centre, European Commission, Via E. Fermi 2749, TP261, 21027 Ispra, VA, Italy,Dept. of Environmental Engineering, Faculty of Environmental Sciences and EULA-Chile Centre, University of Concepcion, Concepcion, Chile;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    MODFLOW2005; MT3DMS; hydroPSO; Calibration; Inverse modeling; Fractured aquifer; Gneiss aquifer;

    机译:MODFLOW2005;MT3DMS;hydroPSO;校准;逆建模含水层破裂;片麻岩含水层;

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