首页> 外文期刊>Engineering analysis with boundary elements >Fast multipole boundary element approaches for acoustic attenuation prediction of reactive silencers
【24h】

Fast multipole boundary element approaches for acoustic attenuation prediction of reactive silencers

机译:快速多极边界元方法预测无功消声器的声衰减

获取原文
获取原文并翻译 | 示例

摘要

The fast multipole boundary element method (FMBEM) is applied to predict the acoustic attenuation performance of reactive silencers. In order to overcome the difficulty of singular boundaries for the acoustic computation of reactive silencers with internal thin wall structure or/and perforated components, two approaches, the substructure FMBEM (Sub-FMBEM) and mixed-body FMBEM (MB-FMBEM) are proposed, and the theoretical foundations and numerical processes of the both approaches are introduced. The studies demonstrated that the ordering of column vectors and numbering of nodes in the Sub-FMBEM have great influence on the convergence of iteration, and the MB-FMBEM may reduce the number of elements and the computational complexity since it only needs to discretize one side boundary of the thin wall and perforated components and it is not necessary to create the interfaces. The Sub-FMBEM, MB-FMBEM and Sub-BEM are then employed to calculate the transmission loss of reactive silencers with thin wall components and perforated tubes, the computational accuracy and efficiency of the approaches are validated. The data of precomputing time and total iterative computational time demonstrated that, the computational efficiency of Sub-FMBEM will descend as the frequency arising, and the Sub-FMBEM may reveal higher computational efficiency than Sub-BEM only when the number of nodes is big enough.
机译:应用快速多极边界元法(FMBEM)来预测反应消声器的声衰减性能。为了克服具有内部薄壁结构或/和穿孔部件的反应性消声器的声学计算的奇异边界的困难,提出了两种方法:子结构FMBEM(Sub-FMBEM)和混合体FMBEM(MB-FMBEM) ,并介绍了这两种方法的理论基础和数值过程。研究表明,Sub-FMBEM中列向量的排序和节点的编号对迭代的收敛性有很大影响,而MB-FMBEM只需要离散化一侧就可以减少元素数量和计算复杂度薄壁和穿孔组件的边界,因此无需创建界面。然后采用Sub-FMBEM,MB-FMBEM和Sub-BEM来计算具有薄壁部件和多孔管的反应消声器的传输损耗,验证了该方法的计算精度和效率。预先计算时间和总迭代计算时间的数据表明,Sub-FMBEM的计算效率将随着频率的升高而下降,并且只有当节点数量足够大时,Sub-FMBEM才能显示出比Sub-BEM更高的计算效率。 。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号