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Hybrid parallel approach to homogenization of transport processes in masonry

机译:混合并行方法使砖石运输过程均匀化

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摘要

Numerical simulations of transport processes, e.g., heat and moisture transport, in heterogeneous masonry structures performed on single processor computers are very time consuming. The classical description by the finite element method leads to enormous numbers of degrees of freedom. It is caused by the fact that there are relatively thin layers of mortar in contrary to large bricks or stones. The mortar and stones have very different material parameters and the finite element mesh has to be able to describe the temperature and moisture fields in the thin layers of mortar and in their vicinity. An application of a multi-scale approach in connection with parallel computing can be successfully exploited. The whole structure is described by a reasonably coarse finite element mesh, called the macro-scale problem, and the material parameters are obtained from the lower-level problems, called the meso-scale problem, by a homogenization procedure. In this procedure, the macro-problem is assigned to the master processor and the meso-scale problems belong to the slave processors. This proposed approach is called hybrid parallel method.
机译:在单处理器计算机上执行的异质砖石结构中的运输过程(例如,热量和水分的运输)的数值模拟非常耗时。有限元方法的经典描述导致了极大的自由度。这是由于与大块砖头或石头相反,砂浆层相对较薄。砂浆和石头具有非常不同的材料参数,并且有限元网格必须能够描述砂浆薄层及其附近的温度和湿度场。可以成功利用与并行计算相关的多尺度方法的应用。整个结构由合理的粗糙有限元网格(称为宏观尺度问题)描述,材料参数是通过均化程序从称为介观尺度问题的较低层问题获得的。在此过程中,宏问题分配给了主处理器,而介观问题属于从属处理器。这种提议的方法称为混合并行方法。

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