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Inverse design method for the 2D problems of thermal cloaking

机译:热隐身二维问题的逆设计方法

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We consider coefficient inverse problems for the 2D model of thermal scattering with variable coefficients. These problems arise when developing technologies of design of thermal cloaking devices. By the optimization method, the problems are reduced to respective control problems. The material parameters (radial and azimuthal heat conductivities) of the inhomogeneous anisotropic medium filling the thermal cloak and a heat flux on a part of the boundary play the role of controls. A unique solvability of direct thermal scattering problem in the Sobolev space is proved and the new estimates of solutions are established. Using these results, the solvability of control problem is proved and the optimality system is derived. Based on analysis of optimality system, the stability estimates of optimal solutions are established and efficient numerical algorithm for solving particular thermal cloaking problem is proposed.
机译:我们考虑具有可变系数的二维热散射模型的系数逆问题。在开发热隐蔽装置的设计技术时会出现这些问题。通过优化方法,将问题减少为相应的控制问题。填充热披风的非均质各向异性介质的材料参数(径向和方位热导率)和部分边界上的热通量起控制作用。证明了Sobolev空间中直接热散射问题的独特可解性,并建立了新的解估计。利用这些结果,证明了控制问题的可解性,并推导了最优系统。在对最优系统进行分析的基础上,建立了最优解的稳定性估计,并提出了求解特定热隐蔽问题的有效数值算法。

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