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Refractive Index Effects on Heat Transfer in Multilayer Scattering Composite

机译:折射率对多层散射复合材料传热的影响

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By the use of the ray tracing method, in combination with Hottel and Sarofim's zonal method and spectral model, transient coupled radiative and conductive heat transfer in a multilayer absorbing, isotropically scattering composite with semitransparent and specular surfaces and interfaces is investigated. The specular reflectivities of all of the surfaces and interfaces are determined by Fresnel's reflective law and Snell's refractive law. For the ray tracing method, the complex total reflection problem of the multilayer composite is properly solved, and the radiative transfer coefficients (RTCs) of the multilayer composite are derived. The RTCs are used to calculate a radiative source term, and the transient energy equation is solved by the fully universal implicit discrete control volume method. Combined with extinction coefficient, conduction-radiation parameter, scattering albedo, layer thickness, and number of layers, the effects of refractive index on pure radiative and coupled radiative and conductive heat transfer are investigated. The analysis shows that, if the refractive indexes of the layers are arranged according to a specified periodical behavior along the thickness, and the other corresponding parameters of each layer are kept the same, then the temperature distribution within the composite shows a similar complex periodical behavior as well.
机译:通过使用射线追踪方法,结合Hottel和Sarofim的区域方法和光谱模型,研究了具有半透明和镜面表面和界面的多层吸收,各向同性散射复合材料中的瞬态耦合辐射和传导热传递。所有表面和界面的镜面反射率由菲涅耳反射定律和斯涅尔折射定律确定。对于射线跟踪方法,可以适当地解决多层复合材料的复杂全反射问题,并得出多层复合材料的辐射传递系数(RTC)。使用RTC来计算辐射源项,并通过完全通用的隐式离散控制量方法求解瞬态能量方程。结合消光系数,传导辐射参数,散射反照率,层厚度和层数,研究了折射率对纯辐射以及辐射与传导耦合传热的影响。分析表明,如果各层的折射率沿厚度沿指定的周期性行为排列,并且各层的其他相应参数保持相同,则复合材料中的温度分布将表现出相似的复杂周期性行为也一样

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