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Discrete ordinates solution of radiative heat transfer in a refractive two-layer slab with collimated irradiation

机译:准直辐射两层折射平板中辐射传热的离散坐标解

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摘要

In this study, radiative heat transfer in a layered absorbing-scattering slab with collimated irradiation is analyzed by a modified discrete ordinates method. A large number of discrete ordinates are employed in the present computation to simulate the angular redistribution and internal reflection of radiation caused by the continuous variation of refractive index in each layer and the Fresnel reflection at the interface. The present results show that the radiative properties of the layer exposed to the external irradiation have stronger influence, and a smaller variation of refractive index in the layer causes less internal reflection and more contribution of backward scattering to the normal-hemispherical reflectance. Thus, a smaller gradient of refractive index in the layer exposed to the external irradiation corresponds to a larger reflectance and a smaller transmittance for a conservative case. When the absorption by the slab is strong, the effects of the internal reflection are minor. Also, the reflectance increases with the increase of the albedo of the layer exposed to the external irradiation. The influences of optical thicknesses and interface reflections are also investigated.
机译:在这项研究中,通过改进的离散纵坐标方法分析了具有准直辐射的分层吸收散射平板中的辐射传热。在本计算中,大量离散的纵坐标被用来模拟由各层中折射率的连续变化和界面处的菲涅耳反射引起的辐射的角度重新分布和内部反射。本结果表明,暴露于外部辐射的层的辐射性能具有更强的影响,并且该层中的折射率的较小变化导致较少的内部反射,并且向后散射对法向半球反射率的贡献更大。因此,在保守情况下,暴露于外部照射的层中的折射率的较小梯度对应于较大的反射率和较小的透射率。当平板吸收强时,内部反射的影响很小。而且,反射率随着暴露于外部照射的层的反照率的增加而增加。还研究了光学厚度和界面反射的影响。

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