首页> 外文会议>SAE Noise and Vibration Conference and Exhibition >Sensitivity of Using Geometrically Incompatible Boundary Elements in Muffler and Silencer Analysis
【24h】

Sensitivity of Using Geometrically Incompatible Boundary Elements in Muffler and Silencer Analysis

机译:消声器中使用几何不兼容边界元素的敏感性和消音器分析

获取原文

摘要

Discontinuous boundary elements, such as constant elements, have been used in many engineering applications for years. In acoustics, the primary variables are sound pressure and normal particle velocity, and they can be defined at the center of each constant element. Since the acoustic variables do not need to be continuous across the element boundary, it is easy to write an algorithm to automatically refine the mesh by subdividing inside each element as frequency goes up. To take one step further, one may also choose to use a geometrically incompatible mesh, in which not only the primary variables but also the geometrical nodes do not need to be continuous across the element boundary. The main advantage is that a model can be quickly assembled from different sources without paying too much attention to the node-to-node continuity at junctions. As such, it is easy to add or remove a component at will to see its effect at the concept design stage. However, under certain circumstances, the incompatibility in mesh geometry may cause a problem. Any tiny gaps or overlays may affect the resonance frequencies if the muffler design relies on the natural frequency concept. In this paper, we study a few reactive and dissipative types of mufflers using both geometrically compatible and incompatible meshes. The objective is to provide some general guidelines on the use of incompatible meshes for muffler and silencer analysis.
机译:多年来,在许多工程应用中使用了不连续的边界元件,例如恒定元素。在声学中,初级变量是声压和正常粒子速度,它们可以在每个恒定元素的中心定义。由于声变量不需要在元素边界上连续,因此可以轻松地编写算法来通过在频率上升时细分自动细分来自动细化网格。要进一步迈出一步,还可以选择使用几何不兼容的网格,其中不仅是主要变量,而且还不需要在元素边界上连续地连续地进行几何节点。主要优点是,可以从不同的源快速组装模型,而不会在结的节点到节点连续性上付出太多关注。因此,易于添加或删除AIT的组件,以便在概念设计阶段看到其效果。但是,在某些情况下,网格几何形状的不相容可能会导致问题。如果消声器设计依赖于自然频率概念,任何微小的间隙或覆盖可能会影响谐振频率。在本文中,我们使用几何兼容和不相容的网格研究一些反应性和耗散类型的消声器。目的是提供一些关于消声器和消音器分析使用不相容网格的一般指导。

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