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基于二重网格的动网格松弛法改进
引用本文:廖佳文,张力天,周璇,李水乡.基于二重网格的动网格松弛法改进[J].计算力学学报,2022,39(1):37-41.
作者姓名:廖佳文  张力天  周璇  李水乡
作者单位:北京大学 工学院, 北京 100871;北京应用物理与计算数学研究所, 北京 100094
基金项目:国家自然科学基金(U1630112);科学挑战专题(JCKY2016212A502)资助项目
摘    要:相比传统的弹簧法等方法,基于球松弛算法的动网格松弛法在复杂边界大变形条件下可以得到质量更高的边界网格以及更大的极限变形量,但该方法在时间效率上还有提升的空间.引入二重网格,采用动网格松弛法进行稀疏网格的网格变形,将边界位移传递到整个网格计算域;再利用二重网格映射,将稀疏网格位移映射到原有计算网格的节点上.算例表明,改进...

关 键 词:二重网格  动网格  网格变形  球松弛  非结构网格
收稿时间:2020/9/17 0:00:00
修稿时间:2021/3/10 0:00:00

An improvement on the dynamic mesh method of sphere relaxation using double grids
LIAO Jia-wen,ZHANG Li-tian,ZHOU Xuan,LI Shui-xiang.An improvement on the dynamic mesh method of sphere relaxation using double grids[J].Chinese Journal of Computational Mechanics,2022,39(1):37-41.
Authors:LIAO Jia-wen  ZHANG Li-tian  ZHOU Xuan  LI Shui-xiang
Institution:College of Engineering, Peking University, Beijing 100871, China;Institute of Applied Physics and Computational Mathematics, Beijing, 100094, China
Abstract:The dynamic mesh method based on the sphere relaxation algorithm generates boundary meshes with higher quality and achieves larger deformation than the traditional spring method even for large boundary deformations.However, the time efficiency of this method still has room for improvement.In this work, we present a double-grid strategy which introduces a coarse mesh besides the computational mesh (fine mesh).The sphere relaxation algorithm is applied to deform the coarse mesh and transfer the boundary displacement to the entire region.Then, the double-grid mapping is carried out to map the displacements of the coarse mesh into the computational mesh.Numerical examples show that the improved method effectively increases the mesh deformation efficiency while the deformation ability and mesh quality remain.We also study the effects of the node number ratio (coarse mesh/fine mesh) on the mesh deformation. Numerical examples indicate that the optimal node number ratio is about 0.5 for the highest efficiency.
Keywords:double grids  dynamic mesh  mesh deformation  sphere relaxation  unstructured grids
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