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Achieving arbitrarily polygonal thermal harvesting devices with homogeneous parameters through linear mapping function

机译:通过线性映射功能实现具有均匀参数的任意多边形集热装置

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摘要

Transformation optics based metamaterial thermal harvesting devices, which provides power and efficiency related advantages by manipulating and concentrating thermal fluxes, have attracted considerable research interests. The potential utilizations are significant for improving the energy conversion efficiencies in existing collecting technologies including heat storages, solar thermal collectors, full cells, etc. However, most of the current researches on thermal harvesting devices are mainly focused on continuous shape profiles based on the scattering cancellation. In this paper, we propose a novel method for fabricating desirable polygonal thermal harvesting devices with homogeneous and nonsingular parameters through linear mapping function. Four polygonal concentrating schemes with fewer kinds of natural materials filling inside the functional regions are demonstrated in transient states. The expected harvesting performances are achieved for each proposed polygonal scheme. Furthermore, the proposed thermal harvesting performances are investigated as a function of the dense degree of the medium-layer configurations. In general, this paper demonstrates a novel method for designing non-continuous shape polygon harvesting devices with corresponding validations. Improved concentrating behaviors would be achieved with denser medium configurations, implemented as appropriately arranged fractions. The findings could have potentials for designing novel transformation optics devices and providing improved energy conversion efficiencies in existing collecting technologies.
机译:基于变换光学的超材料热收集装置通过操纵和集中热通量而提供了与功率和效率相关的优势,已经引起了广泛的研究兴趣。潜在的利用潜力对于提高现有收集技术(包括储热器,太阳能集热器,全电池等)的能量转换效率具有重要意义。然而,当前有关热收集设备的大多数研究主要集中在基于散射的连续形状轮廓上消除。在本文中,我们提出了一种通过线性映射函数制造具有均质和非奇异参数的理想多边形集热装置的新方法。在瞬态状态下,展示了四种多边形浓缩方案,其中几种天然物质填充在功能区内。对于每个提议的多边形方案,均实现了预期的收获性能。此外,根据中层配置的密集程度研究了建议的热收集性能。通常,本文演示了一种设计具有相应验证的非连续形状多边形采集设备的新颖方法。使用更密实的介质配置(实现为适当布置的馏分),可以改善浓缩行为。这些发现可能具有设计新颖的转换光学器件并在现有采集技术中提高能量转换效率的潜力。

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