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Modeling near-field radiative heat transfer from sharp objects using a general three-dimensional numerical scattering technique

机译:利用一般的三维数值散射技术对尖锐物体的近场辐射传热进行建模

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摘要

We develop a general numerical method to calculate the nonequilibrium radiative heat transfer between a plate and compact objects of arbitrary shapes, making the first accurate theoretical predictions for the total heat transfer and the spatial heat flux profile for three-dimensional compact objects including corners or tips. In contrast to the known sphere-plate heat transfer, we find qualitatively different scaling laws for cylinders and cones at small separations, and, in contrast to a flat or slightly curved object, a sharp cone exhibits a local minimum in the spatially resolved heat flux directly below the tip. Our results may have important implications for near-field thermal writing and surface roughness.
机译:我们开发了一种通用的数值方法来计算板与任意形状的紧致物体之间的非平衡辐射热传递,从而对包括角或尖端的三维紧致物体的总热传递和空间热通量分布做出了第一个准确的理论预测。与已知的球形板热传递相反,我们发现小间距处的圆柱体和圆锥体的定性定律不同,并且与平坦或微弯曲的物体相比,尖锐的圆锥体在空间分辨的热通量上表现出局部最小值尖端正下方。我们的结果可能对近场热写入和表面粗糙度具有重要意义。

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