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Comparison of numerical methods for simulating strongly nonlinear and heterogeneous reactive transport problems-the MoMaS benchmark case

机译:模拟强非线性和非均质反应输运问题的数值方法的比较-MoMaS基准案例

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Although multicomponent reactive transport modeling is gaining wider application in various geo-science fields, it continues to present significant mathematical and computational challenges. There is a need to solve and compare the solutions to complexrnbenchmark problems, using a variety of codes, because such intercomparisons can reveal promising numerical solution approaches and increase confidence in the application of reactive transport codes. In this contribution, the results and performance of five current reactive transport codes are compared for the 1D and 2D subproblems of the so-called easy test case of the MoMaS benchmark (Carrayrou et al., Comput Geosci, 2009, this issue). This benchmark presents a simple fictitious reactive transport problem that highlights the main numerical difficulties encountered in real reactive transport problems. As a group, the codes include iterative and noniterative operator splitting and global implicit solution approaches. The 1D easy advective and 1D easy diffusive scenarios were solved using all codes, and, in general, there was a good agreement, with solution discrepancies limited to regions with rapid concentration changes. Computational demands were typically consistent with what was expected for the various solution approaches. The differences between solutions given by the three codes solving the 2D problem are more important. The very high computing effort required by the 2D problem illustrates the importance of parallel computations. The most important outcome of the benchmark exercise is that all codes are able to generate comparable results for problems of significant complexity and computational difficulty.
机译:尽管多组分反应输运模型正在各种地球科学领域中得到越来越广泛的应用,但它继续带来重大的数学和计算挑战。需要使用多种代码来解决和比较复杂基准测试问题的解决方案,因为此类比对可以揭示有希望的数值解决方案,并增加对反应性运输代码应用的信心。在此贡献中,比较了MoMaS基准的所谓简单测试案例的一维和二维子问题的五个当前无功传输代码的结果和性能(Carrayrou等人,Comput Geosci,2009,此问题)。该基准提出了一个简单的虚拟反应运输问题,突出了在实际反应运输问题中遇到的主要数值困难。作为一组,这些代码包括迭代和非迭代运算符拆分以及全局隐式解决方案方法。一维易对流和一维易扩散场景已使用所有代码进行了求解,并且总体上达成了良好的协议,解决方案差异仅限于浓度快速变化的区域。计算需求通常与各种解决方案所期望的一致。解决二维问题的三个代码给出的解决方案之间的差异更为重要。 2D问题所需的非常高的计算工作量说明了并行计算的重要性。基准测试最重要的结果是,所有代码都能够针对复杂性和计算难度大的问题生成可比较的结果。

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