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Multi-parametric intensive stochastic simulations for hydrogeology on a computational grid

机译:水文地质上的多参数密集随机模拟计算网格

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Numerical modelling is an important key for the management and remediation of groundwater resources. Numerical simulations must be performed on domains of a large size, at a fine resolution to take into account the scale of geological heterogeneities. Numerical models are based on probabilistic data and rely on Uncertainty Quantification methods (UQ). In this stochastic framework, non intrusive methods require to run multiple simulations. Also, each simulation is governed by multiple parameters and a complete study requires to carry out analysis for more than 50 sets of parameters. We have identified three levels of distributed and parallel computing: subdomain decomposition in one simulation, multiple simulations for UQ methods, multiparametric studies. Our objective is to use the computing and memory resources of computational grids to deploy these multiple large-scale simulations. We discuss our implementation of these three levels, using an object-oriented approach. We present some preliminary results, with a strategy to choose between the first and second level.
机译:数值建模是地下水资源管理和修复的重要关键。必须在大尺寸的域中进行数值模拟,以良好的分辨率考虑地质异质性的规模。数值模型基于概率数据并依赖于不确定性量化方法(UQ)。在此随机框架中,非侵入式方法需要运行多个模拟。此外,每个模拟由多个参数控制,并且完整的研究需要进行50多组参数进行分析。我们已经确定了三个级别的分布式和并行计算:子域分解在一个模拟中,UQ方法的多种仿真,多体项研究。我们的目标是使用计算网格的计算和内存资源来部署这些多种大规模模拟。我们使用面向对象的方法讨论我们的实施这三个级别。我们提出了一些初步结果,并在第一和第二级之间选择了策略。

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