在低电磁干扰的散热器设计中使用元启发式辅助结构拓优化方法来优化散热器设计
Musaddiq Al Ali1, Masatoshi Shimoda2, Brahim Benaissa2
1Department of Advanced Science and Technology, Toyota Technological Institute, 2-12-1 Hisakata, Tenpaku-Ku, Nagoya, Aichi, 468-8511, Japan. alali@toyota-ti.ac.jp.
Scientific reports
|February 10, 2024
概括
超音波辅助结构拓优化 (MASTO) 方法有效地设计散热器,以获得最佳的导热率和减少电磁干扰 (EMI). 这种方法平衡了热性能与EMI控制的实际应用.
科学领域:
- 多物理工程 多物理工程
- 计算设计的计算设计.
- 热管理 热管理
背景情况:
- 设计散热器需要平衡导热率与电磁干扰 (EMI) 问题.
- 传统的方法与热传递和电磁现象的复杂相互作用作斗争.
研究的目的:
- 研究用于散热器设计的Metaheuristic辅助结构拓优化 (MASTO) 方法.
- 在2D散热器布局中实现高导热率和最小的EMI.
主要方法:
- 应用MASTO方法用于多物理优化.
- 对电磁特征的2D散热器布局与延长的分析.
- 模拟数据与实际制造考虑的整合.
主要成果:
- 马斯托成功地导航了设计空间,产生了优化的解决方案.
- 该方法证明了有效的散热和EMI控制.
- 在二维布局中确定并解决了与共振相关的EMI问题.
结论:
- 马斯托方法是复杂的多物理优化问题的宝贵工具.
- 马斯托允许设计具有协调的热和EMI性能的散热器.
- 该研究证实了制造MASTO衍生设计的可行性.
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