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SIMULATION AND OPTIMIZATION IN THE PROBLEMS OF DESIGN OF SPHERICAL LAYERED THERMAL SHELLS

机译:球形层状热壳设计中的模拟与优化

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摘要

This paper describes the inverse problems of heat transfer, arising in designing multilayered spherical cloaking shells and other functional devices for controlling thermal fields. It is assumed that shells are comprised of a finite number of layers, each filled by a homogeneous isotropic or anisotropic medium. An exact solution for a partial case of a single-layer homogeneous anisotropic shell is presented and analyzed. An optimization approach used to reduce the inverse problems under consideration to control problems. A numerical algorithm for solving them is proposed, which is based on a particle swarm optimization, and the results of numerical experiments are discussed.
机译:本文介绍了传热的逆问题,在设计多层球形粘贴壳和用于控制热场的其他功能装置时产生的传热。假设壳由有限数量的层组成,每个层由均匀各向同性或各向异性培养基填充。提出并分析了对单层均相各向异性壳的部分壳体的精确解决方案。用于减少控制问题的逆问题的优化方法。提出了一种求解它们的数值算法,其基于粒子群优化,讨论了数值实验的结果。

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