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Parallel finite element computations in fluid mechanics

机译:流体力学中的并行有限元计算

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摘要

We provide an overview of the role of parallel finite element computations in fluid mechanics. We emphasize the class of flow problems involving moving boundaries and interfaces. Some of the computationally most challenging flow problems, such as fluid-object and fluid-structure interactions as well as free-surface and two-fluid flows, belong to this class. In the development of the methods targeting this class of problems, the computational challenges involved need to be addressed in such a way that 3D computation of complex applications can be carried out efficiently on parallel computers. This requirement has to be one of the key factors in designing various components of the overall solution approach, such as solution techniques for the discretized equations and mesh update methods for handling the changes in the spatial domain occupied by the fluid. This overview includes a description of how the computational challenges are addressed and how the computational schemes can be enhanced with special preconditioning techniques.
机译:我们概述了并行有限元计算在流体力学中的作用。我们强调涉及流动边界和界面的流动问题的类别。这类在计算上最具挑战性的流动问题,例如流体-物体和流体-结构的相互作用以及自由表面和二流体流动,都属于此类。在针对此类问题的方法的开发中,涉及的计算难题需要以一种能够在并行计算机上有效地执行复杂应用程序的3D计算的方式来解决。该要求必须是设计整体求解方法各个组成部分的关键因素之一,例如离散化方程的求解技术和用于处理流体所占据的空间域变化的网格更新方法。此概述包括如何解决计算难题以及如何通过特殊的预处理技术增强计算方案的描述。

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