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A novel fast Remesh-free mesh deformation method and its application to optimal design of electromagnetic devices

机译:一种新颖的无网格快速无网格变形方法及其在电磁装置优化设计中的应用

摘要

Optimal shape design of electromagnetic devices using finite-element (FE) parameter sweeping analysis is becoming a routine procedure today. In the optimal design process, different meshes for different device shapes are required for subsequent FE computations to obtain the values of objective function from the field solution. Traditional full or partial remeshing methods usually cost excessive computing time when generating these FE meshes, especially for 3-D problems. The proposed remesh-free method being reported requires only one set of fine computational mesh and an initial coarse mesh, which also forms a convex decomposition of the solution domain. For new geometry shapes, new deformed meshes can be quickly derived using a coordinate mapping technique once the new coordinates of the nodes on the initial boundary mesh are given. In this way, each mesh for each set of parameters can be produced quickly without remeshing, as only the existing fine mesh topological information is needed to update the nodal positions. The method can be applied to both 2-D and 3-D problems. 2-D and 3-D numerical examples are given to showcase the effectiveness of the proposed method.
机译:如今,使用有限元(FE)参数扫描分析的电磁设备的最佳形状设计已成为日常工作。在最佳设计过程中,随后的有限元计算需要使用不同设备形状的不同网格,才能从现场求解中获得目标函数的值。当生成这些有限元网格时,传统的完全或部分重划方法通常会花费大量的计算时间,尤其是对于3D问题。所报告的拟议的无网格方法仅需要一组精细的计算网格和一个初始的粗糙网格,这也形成了求解域的凸分解。对于新的几何形状,一旦给出了初始边界网格上节点的新坐标,便可以使用坐标映射技术快速导出新的变形网格。以此方式,可以快速产生每组参数的每个网格而无需重新网格化,因为仅需要现有的精细网格拓扑信息来更新节点位置。该方法可以应用于2-D和3-D问题。给出了2-D和3-D数值示例,以展示所提出方法的有效性。

著录项

  • 作者

    Zhao Y; Ho SL; Fu WN;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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