引用本文: | 黄振卫,周其斗,方斌,等.加肋圆柱壳结构的FE-IE算法网格尺度划分原则.[J].国防科技大学学报,2017,39(3):179-184.[点击复制] |
HUANG Zhenwei,ZHOU Qidou,FANG Bin,et al.Guidance of meshing scale of finite element coupled infinite element method for a ring stiffened cylindrical shell[J].Journal of National University of Defense Technology,2017,39(3):179-184[点击复制] |
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加肋圆柱壳结构的FE-IE算法网格尺度划分原则 |
黄振卫, 周其斗, 方斌, 谢剑波 |
(海军工程大学 舰船工程系, 湖北 武汉 430033)
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摘要: |
为了研究结构有限元耦合流体无限元算法的网格尺度划分原则,提出有限元-无限元算法中结构湿表面的网格尺度划分原则。数值计算结果表明,对加肋圆柱壳而言,在保证一个肋骨间距至少有2个有限元单元的前提下,将结构主振型弯曲波波长作为有限元-无限元算法中结构湿表面网格尺度划分的参考标准是可行的,即保证一个主振型分量波长内至少有6个有限元单元。提出以结构主振型分量的弯曲波波长(而不是最短的结构波长)作为有限元-无限元算法中网格尺度划分的参考标准,所得结论对于有限元-无限元算法中结构湿表面的网格划分以及控制内域流体有限元数量均具有十分重要的参考意义。 |
关键词: 加肋圆柱壳 有限元-无限元算法 振动与声辐射 网格尺度 |
DOI:10.11887/j.cn.201703027 |
投稿日期:2016-01-25 |
基金项目:国家自然科学基金资助项目(51309230) |
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Guidance of meshing scale of finite element coupled infinite element method for a ring stiffened cylindrical shell |
HUANG Zhenwei, ZHOU Qidou, FANG Bin, XIE Jianbo |
(Department of Naval Ship Engineering, Naval University of Engineering, Wuhan 430033, China)
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Abstract: |
In order to investigate the meshing scale of the FE-IE (finite element coupled infinite element) method for a ring stiffened cylindrical shell, the guidance was put forward for the structural wetted surface. Numerical results show that, for ring-stiffened cylindrical shells, the bending wavelength of the main vibration mode can be taken as the reference of meshing scale in FE-IE calculation which is testified with at least two finite elements per distance of stiffeners. There are at least six finite elements per one bending wavelength of the main vibration mode. The bending wavelength of the main vibration mode is used as the reference of meshing scale of FE-IE calculation rather than the shortest wavelength of structural waves. The obtained conclusions are significant to the meshing of structural wetted surface and the controlling of the total number of elements in the interior fluid region. |
Keywords: ring stiffened cylindrical shell finite element coupled infinite element method vibration and sound radiation mesh scale |
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