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首页> 外文期刊>International Journal of Thermal Sciences >Optimization-based design of easy-to-make devices for heat flux manipulation
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Optimization-based design of easy-to-make devices for heat flux manipulation

机译:基于优化的用于热通量操作的易于制造装置的设计

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摘要

In this work, we present a new method for the design of heat flux manipulating devices, with emphasis on their manufacturability. The design is obtained as solution of a nonlinear optimization problem where the objective function represents the given heat flux manipulation task, and the design variables define the material distribution in the device. In order to facilitate the fabrication of the device, the material at a given point is chosen between two materials with highly different conductivity. By this way, the whole device can be seen, in the large scale, as a metamaterial having a specific anisotropic effective conductivity. As an application example, we designed a heat flux inverter which was so simple that it could be hand-made. The performance of this device for heat flux inversion was experimentally tested, proving that it was more efficient than a more complex device designed using the classical transformation thermodynamics approach.
机译:在这项工作中,我们提出了一种新方法,用于设计热通量操作装置,重点是它们的可制造性。 该设计是作为非线性优化问题的解决方案,其中目标函数表示给定的热通量操作任务,并且设计变量定义了设备中的材料分布。 为了便于该装置的制造,在具有高度不同的导电性的两种材料之间选择给定点处的材料。 通过这种方式,可以在大规模中看到整个装置,作为具有特定各向异性有效电导率的超材料。 作为一个应用示例,我们设计了一种热量逆变器,这很简单,可以手工制作。 通过使用经典变换热力学方法设计的更复杂的装置,该装置对热通量反转的性能进行了实验测试的。

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