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An open source massively parallel solver for Richards equation: Mechanistic modelling of water fluxes at the watershed scale

机译:理查兹方程的开源大规模并行求解器:分水岭尺度水通量的力学模型

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In this paper we present a massively parallel open source solver for Richards equation, named the RichardsFOAM solver. This solver has been developed in the framework of the open source generalist computational fluid dynamics tool box OpenFOAM~? and is capable to deal with large scale problems in both space and time. The source code for RichardsFOAM may be downloaded from the CPC program library website. It exhibits good parallel performances (up to ~90% parallel efficiency with 1024 processors both in strong and weak scaling), and the conditions required for obtaining such performances are analysed and discussed. These performances enable the mechanistic modelling of water fluxes at the scale of experimental watersheds (up to few square kilometres of surface area), and on time scales of decades to a century. Such a solver can be useful in various applications, such as environmental engineering for long term transport of pollutants in soils, water engineering for assessing the impact of land settlement on water resources, or in the study of weathering processes on the watersheds.
机译:在本文中,我们提出了一种针对Richards方程的大规模并行开源求解器,名为RichardsFOAM求解器。该求解器是在开放源代码的通用计算流体动力学工具箱OpenFOAM〜?的框架中开发的。并且能够处理时空上的大规模问题。 RichardsFOAM的源代码可以从CPC程序库网站下载。它具有良好的并行性能(在强和弱缩放条件下,使用1024个处理器时并行效率最高可达〜90%),并且分析和讨论了获得此类性能所需的条件。这些性能使得能够在实验分水岭规模(最大表面积为几平方公里)以及数十年到一个世纪的时间尺度上对水通量进行机械建模。这种求解器可用于各种应用中,例如用于土壤中污染物的长期运输的环境工程,用于评估土地沉降对水资源的影响的水工程,或在流域的风化过程研究中。

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