吉林大学学报(理学版) ›› 2025, Vol. 63 ›› Issue (5): 1489-1498.

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基于热超构材料的设计与时域有限元模拟

鲍守珠, 和斌   

  1. 兰州交通大学 数理学院, 兰州 730070
  • 收稿日期:2024-06-05 出版日期:2025-09-26 发布日期:2025-09-26
  • 通讯作者: 和斌 E-mail:hebinxtu@126.com

Design and Time-Domain Finite Element Simulation Based on Thermal Superstructure Materials

BAO Shouzhu, HE Bin   

  1. School of Mathematics and Physics, Lanzhou Jiaotong University, Lanzhou 730070, China
  • Received:2024-06-05 Online:2025-09-26 Published:2025-09-26

摘要: 利用分层近似思想和有效介质理论设计变换热力学装置的材料参数, 并给出时域有限元模拟. 首先, 利用变换热力学理论, 推导出热斗篷、 热集中器和热旋转器3种装置的理想材料参数. 其次, 利用分层近似思想消除参数的非均匀性, 设计出分层结构, 为消除分层结构的各向异性, 利用有效介质理论设计各向同性的材料参数. 最后, 给出数值测试结果以验证装置的性能及设计的可行性. 结果表明, 当分层层数越多时, 该装置实现的热效应越好, 可达到与理想装置相同的效果.

关键词: 变换热力学, 超材料,  , 材料设计, 有限元模拟

Abstract: We designed the material parameters of transformation thermodynamic devices and gave time-domain finite element simulations by using the layered approximation idea and effective medium theory. Firstly, we derived the ideal material parameters of the three devices: heat cloak, heat concentrator and heat rotator by using the theory of transformational thermodynamics. Secondly, we eliminated the non-uniformity of the parameters and designed the layered structure by using the idea of layered approximation, and in order to eliminate the anisotropy of the layered structure, we used the effective medium theory to design the isotropic material parameters. Finally, we gave numerical test results to verify the performance of the device and the feasibility of the design. The results show that when the number of layered layers is higher, the designed device realizes better thermal effects, which can achieve the same effect as the ideal device.

Key words: transformation thermodynamics,  , metamaterials,  , material design,  , finite element simulation

中图分类号: 

  • TB34