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Effective flux temperature formulation for energy conversion using microscale thermal radiation

机译:使用微米热辐射的能量转换有效焊剂温度配方

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The non-Planckian spectrum of microscale thermal radiation is interpreted using a formulation for non-thermal radiation. The non-thermal aspects of the energy spectrum that results when radiating bodies are in close proximity are examined using the fluctuational electrodynamic approach to microscale thermal radiation. A definition of the effective flux temperature for microscale thermal radiation is presented. A technique to determine the entropy flux in a microscale field is obtained and used to calculate the effective flux temperature for chromium surfaces. The effective flux temperature of microscale radiation permits an assessment of the limits of the performance of proposed devices - for the exploitation the spacing effect for energy conversion. The performance of a microscale thermophotovoltaic device is examined in terms of this flux temperature.
机译:使用用于非热辐射的配方解释微尺度热辐射的非普朗克谱。通过对微尺度热辐射的波动电动力学方法检查辐射体时产生辐射体紧密近的能量谱的非热方面。提出了微观辐射有效通量温度的定义。获得测定微尺度场中熵通量的技术,并用于计算铬表面的有效通量温度。微尺度辐射的有效通量温度允许评估所提出的装置的性能的限制 - 用于开发能量转换的间距效果。根据该助焊剂温度检查微尺寸炎热剂器件的性能。

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