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PAR(2): Parallel Random Walk Particle Tracking Method for solute transport in porous media

机译:PAR(2):多孔介质中溶质运输的平行随机步行粒子跟踪方法

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摘要

Computational modeling of solute migration in groundwater systems is a fundamental component in water resources management and risk analysis. Therefore, it is imperative to have fast and reliable computational tools to simulate solute transport in groundwater systems. In this work we present PAR(2), a GPU-accelerated solute transport simulator based on the Random Walk Particle Tracking (RWPT) technique, a Lagrangian method particularly suited for parallelization. PAR(2) is able to run on any computing platform equipped with an NVIDIA GPU, such as common desktops and High-Performance Computing (HPC) nodes. The program is developed in C++/CUDA. In our illustration, groundwater flow is simulated on a structured grid using MODFLOW, which can be linked to PAR(2) using the LMT package. Simulation parameters can be defined through a convenient YAML configuration file. Additionally, we propose an analytical treatment of the dispersion tensor that allows the RWPT to be effectively implemented using GPU parallelization. The speedup gained with the parallelization drastically reduces the total simulation time, allowing the application of computationally expensive algorithms (e.g., Monte-Carlo simulation) on large-scale stochastic hydro-systems. (C) 2019 Elsevier B.V. All rights reserved.
机译:地下水系统中溶质迁移的计算建模是水资源管理和风险分析中的基本组成部分。因此,必须具有快速可靠的计算工具来模拟地下水系统中的溶质运输。在这项工作中,我们提供了基于随机步行粒子跟踪(RWPT)技术的GPU加速溶质运输模拟器PAR(2),一种特别适合并行化的拉格朗日方法。 PAR(2)能够在配备有NVIDIA GPU的任何计算平台上运行,例如常见台式机和高性能计算(HPC)节点。该程序是在C ++ / CUDA中开发的。在我们的说明中,使用Modflow在结构化网格上模拟地下水流,这可以使用LMT包连接到PAR(2)。可以通过方便的yaml配置文件定义仿真参数。另外,我们提出了一种分析张量的分析处理,其允许使用GPU并行化有效地实现RWPT。通过并行化获得的加速度大大降低了总模拟时间,允许在大型随机水力系统上应用计算昂贵的算法(例如,Monte-Carlo仿真)。 (c)2019年Elsevier B.V.保留所有权利。

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