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Kinetic Algorithms for Modeling Conductive Fluids Flow on High-Performance Computing Systems
Doklady Mathematics ( IF 0.6 ) Pub Date : 2019-11-01 , DOI: 10.1134/s1064562419060206
B. N. Chetverushkin , A. V. Saveliev , V. I. Saveliev

Processes in the dynamics of electrically conducting fluid flows in complex heat transfer systems are mathematically modeled in detail on high-performance parallel computing systems. The study is based on the kinetically consistent magnetogasdynamic approach adjusted to this class of problems. The kinetically consistent algorithm is well adapted to the architecture of high-performance computing systems with massive parallelism, so that complex heat transfer systems can be effectively studied with a high resolution. The approach, method, and algorithms are described, and numerical results are presented.

中文翻译:

用于在高性能计算系统上模拟导电流体流动的动力学算法

复杂传热系统中导电流体流动的动力学过程在高性能并行计算系统上进行了详细的数学建模。该研究基于针对此类问题调整的动力学一致的磁气动力学方法。动力学一致算法很好地适应了具有大规模并行性的高性能计算系统的架构,因此可以以高分辨率有效地研究复杂的传热系统。描述了方法、方法和算法,并给出了数值结果。
更新日期:2019-11-01
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