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Optimization-based design of a heat flux concentrator

机译:基于优化的热通量集中器设计

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摘要

To gain control over the diffusive heat flux in a given domain, one needs to engineer a thermal metamaterial with a specific distribution of the generally anisotropic thermal conductivity throughout the domain. Until now, the appropriate conductivity distribution was usually determined using transformation thermodynamics. By this way, only a few particular cases of heat flux control in simple domains having simple boundary conditions were studied. Thermal metamaterials based on optimization algorithm provides superior properties compared to those using the previous methods. As a more general approach, we propose to define the heat control problem as an optimization problem where we minimize the error in guiding the heat flux in a given way, taking as design variables the parameters that define the variable microstructure of the metamaterial. In the present study we numerically demonstrate the ability to manipulate heat flux by designing a device to concentrate the thermal energy to its center without disturbing the temperature profile outside it.
机译:为了获得对给定域中的扩散热通量的控制,需要设计一种热特异材料,使其在整个域中具有特定的各向异性热导率分布。到目前为止,通常使用转化热力学确定合适的电导率分布。通过这种方式,仅研究了具有简单边界条件的简单域中的热通量控制的一些特殊情况。与以前的方法相比,基于优化算法的热超材料提供了卓越的性能。作为更通用的方法,我们建议将热控制问题定义为优化问题,在该问题中,我们将定义超材料的可变微观结构的参数作为设计变量,以给定的方式最小化引导热通量的误差。在本研究中,我们通过数值方法证明了通过设计一种将热能集中到其中心而不干扰其外部温度分布的设备来操纵热通量的能力。

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