首页> 外文会议>ASME summer heat transfer conference;HT2009 >HARVESTING NANOSCALE RADIATION HEAT TRANSFER WITH PYROELECTRIC MATERIALS
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HARVESTING NANOSCALE RADIATION HEAT TRANSFER WITH PYROELECTRIC MATERIALS

机译:利用热电材料来捕获纳米尺度的辐射传热

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Pyroelectric energy conversion offers a novel, direct energy-conversion technology by transforming time-dependent temperature directly into electricity. It makes use of the pyroelectric effect to create a flow of charge to or from the surface of a material as a result of heating or cooling. However, existing pyroelectric energy converter can only operate at low frequency due to relatively low heat transfer rate between the pyroelectric materials and the working fluid subjected to oscillatory fluid flow between hot and cold sources. On the Other hand, energy transfer by thermal radiation between two semi-infinite solids can be enhanced by several orders of magnitude as the gap separating them reduces to subwavelength size thanks to interference and tunneling of electromagnetic waves across the gap. This paper proposes a novel way to harvest nanoscale radiation heat transfer for direct pyroelectric energy conversion of waste heat into electricity. A new device is investigated numerically by accurately modeling nanoscale radiation heat transfer between the pyroelectric materials and hot and cold surfaces. Performance of the pyroelectric converter is predicted at various frequencies. The result shows that rapid energy transfer and higher operating frequency can be achieved to increase efficiency and power density.
机译:热电能量转换通过将时间依赖的温度直接转化为电力,提供一种新颖的直接能量转换技术。它利用热电效应以由于加热或冷却而从材料的表面产生或来自材料表面的电荷流动。然而,现有的热电能量转换器由于热电材料和在热和冷源之间经历振荡流体流动的工作流体之间的相对低的传热速率而仅在低频下操作。另一方面,由于电磁波穿过间隙的干扰和隧道,可以通过几个半无限固体之间的热辐射通过两个半无限固体之间的热辐射能量传递,因为相反,通过电磁波穿过间隙的电磁波的干扰和隧道来降低到亚波长大小。本文提出了一种新的方法来收获纳米级辐射热传递,以将废热的直接热电能转化为电力。通过精确地建模热电材料和冷表面之间的纳米级辐射热传递来计算新装置。热电转换器的性能预测到各种频率。结果表明,可以实现快速的能量转移和更高的工作频率以提高效率和功率密度。

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