Anomalous Heat Diffusion in a Chain of Large Particles Through Radiative Heat Transfer

Bingyi Liu, Junming Zhao, Linhua Liu
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引用次数: 1

Abstract

Radiative heat transfer in particulate system has many applications in industry. Recently, the anomalous heat diffusion was reported for particulate system in near field thermal radiation heat transfer, and the existence of heat super-diffusive regimes was observed and the spread of heat can be described by Levy flight. In this work, attention is paid to investigate whether there is anomalous heat diffusion in far-field radiative heat transfer or not. Specifically, this study is focused on the radiative heat transport of a system, consisting of optically large particles, in the geometric optic range. Those particles are arranged in a linear chain surrounded by reflective walls and all particles are identical and equally spaced. The effect of the boundary type and particle surface emissivity on the heat diffusion is also investigated. The heat diffusion behavior in the far-field is studied based on Monte Carlo ray tracing method and the fractional diffusion equation in one dimension. The result indicates the existence of anomalous heat diffusion in the far-field by analyzing the asymptotic behavior of radiation distribution function (RDF). It’s shown that the distribution of RDF decays in power law and can be divided into two parts: for near the source particle, heat diffusive regime is super-diffusive (according to the analysis of fractional diffusion equation), while for far from the source particle, heat diffusive regime becomes sub-diffusive. Moreover, the kind of boundary type and particle wall emissivity have a significant influence on the heat diffusion of the far-field radiation heat transfer. This work will help the understanding of radiation heat transfer in particulate system in the far-field.
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通过辐射传热的大颗粒链中的异常热扩散
颗粒系统的辐射传热在工业中有着广泛的应用。近年来报道了近场热辐射传热中颗粒系统的异常热扩散现象,并观测到热超扩散状态的存在,热扩散可以用Levy飞行来描述。本文主要研究了远场辐射换热过程中是否存在异常热扩散。具体来说,本研究的重点是由光学大颗粒组成的系统在几何光学范围内的辐射热输运。这些粒子排列成一条线性链,周围是反射壁,所有的粒子都是相同的,间距相等。研究了边界类型和颗粒表面发射率对热扩散的影响。基于蒙特卡罗射线追迹法和一维分数扩散方程研究了远场的热扩散行为。通过分析辐射分布函数(RDF)的渐近特性,得出远场存在异常热扩散的结论。结果表明,RDF分布呈幂律衰减,可分为两部分:在源粒子附近,热扩散状态为超扩散状态(根据分数扩散方程的分析),而在远离源粒子的地方,热扩散状态为次扩散状态。此外,边界类型和粒子壁发射率对远场辐射传热的热扩散有显著影响。这项工作将有助于对远场粒子系统辐射传热的认识。
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