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Interface COMSOL-PHREEQC (iCP), an efficient numerical framework for the solution of coupled multiphysics and geochemistry

机译:接口COMSOL-PHREEQC(iCP),一个有效的数值框架,用于解决多物理场和地球化学耦合问题

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摘要

This paper presents the development, verification and application of an efficient interface, denoted as iCP, which couples two standalone simulation programs: the general purpose Finite Element framework COMSOL Multiphysics~® and the geochemical simulator PHREEQC. The main goal of the interface is to maximize the synergies between the aforementioned codes, providing a numerical platform that can efficiently simulate a wide number of multiphysics problems coupled with geochemistry. iCP is written in Java and uses the IPhreeqc C++ dynamic library and the COMSOL Java-API. Given the large computational requirements of the aforementioned coupled models, special emphasis has been placed on numerical robustness and efficiency. To this end, the geochemical reactions are solved in parallel by balancing the computational load over multiple threads. First, a benchmark exercise is used to test the reliability of iCP regarding flow and reactive transport. Then, a large scale thermo-hydro-chemical (THC) problem is solved to show the code capabilities. The results of the verification exercise are successfully compared with those obtained using PHREEQC and the application case demonstrates the scalability of a large scale model, at least up to 32 threads.
机译:本文介绍了称为iCP的高效接口的开发,验证和应用,该接口结合了两个独立的仿真程序:通用有限元框架COMSOL Multiphysics〜®和地球化学仿真器PHREEQC。该界面的主要目的是最大程度地发挥上述代码之间的协同作用,从而提供一个数字平台,可以高效地模拟与地球化学耦合的多种多物理场问题。 iCP用Java编写,并使用IPhreeqc C ++动态库和COMSOL Java-API。考虑到上述耦合模型的大量计算需求,已经特别强调了数值鲁棒性和效率。为此,通过平衡多个线程上的计算负载来并行解决地球化学反应。首先,使用基准测试来测试iCP在流量和反应性运输方面的可靠性。然后,解决了大规模热化学法(THC)问题,以显示代码功能。验证练习的结果已成功与使用PHREEQC获得的结果进行了比较,该应用案例证明了大规模模型的可伸缩性,至少可支持32个线程。

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