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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Combined swept region and intersection-based single-material remapping method
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Combined swept region and intersection-based single-material remapping method

机译:组合扫描区域和基于交叉口的单材料重新映射方法

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摘要

A typical arbitrary Lagrangian-Eulerian algorithm consists of a Lagrangian step, where the computational mesh moves with the fluid flow; a rezoning step, where the computational mesh is smoothed and repaired in case it gets too distorted; and a remapping step, where all fluid quantities are conservatively interpolated on this new mesh. In single-material simulations, the remapping process can be represented in a flux form, with fluxes approximated by integrating a reconstructed function over intersections of neighboring computational cells on the original and rezoned computational mesh. This algorithm is complex and computationally demanding - Therefore, a simpler approach that utilizes regions swept by the cell edges during rezoning is often used in practice. However, it has been observed that such simplification can lead to distortion of the solution symmetry, especially when the mesh movement is not bound by such symmetry.
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