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A multigrid accelerated hybrid unstructured mesh method for 3D compressible turbulent flow

机译:3D可压缩湍流的多网格加速混合非结构网格方法

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摘要

A cell vertex finite volume method for the solution of steady compressible turbulent flow problems on unstructured hybrid meshes of tetrahedra, prisms, pyramids and hexahedra is described. These hybrid meshes are constructed by firstly discretising the computational domain using tetrahedral elements and then by merging certain tetrahedra. A one equation turbulence model is employed and the solution of the steady flow equations is obtained by explicit relaxation. The solution process is accelerated by the addition of a multigrid method, in which the coarse meshes are generated by agglomeration, and by parallelisation. The approach is shown to be effective for the simulation of a number of 3D flows of current practical interest.
机译:描述了一种求解非可压缩四面体,棱柱,金字塔和六面体混合网格上稳定可压缩湍流问题的单元顶点有限体积方法。通过首先使用四面体元素离散计算域,然后合并某些四面体来构造这些混合网格。采用一方程湍流模型,并通过显式松弛获得稳定流方程的解。通过添加多网格方法可以加快求解过程,在该方法中,通过凝聚和并行化生成了粗网格。示出该方法对于模拟当前实际感兴趣的许多3D流是有效的。

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