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首页> 外文期刊>International Journal for Numerical Methods in Engineering >A multi-frontal parallel algorithm for coupled thermo-hydro-mechanical analysis of deforming porous media
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A multi-frontal parallel algorithm for coupled thermo-hydro-mechanical analysis of deforming porous media

机译:多孔介质变形的热-水-力学耦合分析的多前沿并行算法

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In this paper, a multi-frontal parallel algorithm is developed to solve fully coupled heat, water and gas flow in deformable porous media. The mathematical model makes use of the modified effective stress concept together with the capillary pressure relationship and takes phase change and latent heat transfer into account. The chosen macroscopic field variables are displacement, capillary pressure, gas pressure and temperature. The parallel program is developed on a cluster of workstations. The PVM (Parallel Virtual Machine) system is used to handle communications among networked workstations. The multi-frontal method has advantages such as numbering of the finite element mesh in an arbitrary manner, simple programming organization, smaller core requirements and shorter computation times. An implementation of this parallel method on workstations is discussed. The speedup and efficiency of this method is demonstrated and compared with a general domain decomposition method based on band matrix methods by numerical examples.
机译:本文提出了一种多面并行算法来求解可变形多孔介质中的热,水和气体的完全耦合流动。数学模型利用改进的有效应力概念以及毛细压力关系,并考虑了相变和潜热传递。选择的宏观场变量是位移,毛细管压力,气压和温度。并行程序是在工作站集群上开发的。 PVM(并行虚拟机)系统用于处理网络工作站之间的通信。该多面方法具有诸如以任意方式对有限元网格进行编号,简单的编程组织,较小的核心需求和较短的计算时间等优点。讨论了此并行方法在工作站上的实现。通过数值算例,证明了该方法的提速性和效率,并与基于带矩阵法的一般域分解方法进行了比较。

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