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非均匀介质红外辐射传输模型

INFRARED RADIATION TRANSFER MODEL FOR AN INHOMOGENEOUS MEDIUM
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摘要 本文建立镜反射不透明表面下,非均匀光学物性纯吸收性介质内的红外辐射传输模型。红外辐射在折射率连续变化的介质内沿曲线传输。将非均匀介质沿厚度方向离散成n个物性均匀的等温微层,每个微层内辐射沿直线传播,光滑曲线传输路径即离散成首尾相连的折线系列。采用多层辐射传输模型,利用射线踪迹法建立非均匀介质内的红外辐射传输模型。在多层模型中,相邻两微层间的界面引入折射/全反射判据,避免了界面处的积分奇异现象和原本不存在的界面反射现象。 An infrared radiation transfer model is developed for an inhomogeneous purely absorbing medium with opaque specular surfaces. Infrared radiation transfers in a curve within a medium having a continuously variable refractive index. The inhomogenous medium is divided into n homogenous isothermal sublayers and the radiation transfers in a straight line in each sublayer. Thus the curve trajectory for radiation is discretized as a series of polylines. Using a multilayer radiative transfer model, an infrared radiation transfer model is built for the inhomogenous medium by a ray-tracing method. The multilayer model introduces a criterion for refraction/total reflection at the interfaces between neighboring sub-layers, avoiding the integral singulartity and reflection at physically inexistent interfaces.
出处 《工程热物理学报》 EI CAS CSCD 北大核心 2009年第4期645-648,共4页 Journal of Engineering Thermophysics
基金 国家自然科学基金(No.50806018)
关键词 非均匀介质 多层模型 射线踪迹法 辐射传递系数 inhomogenous medium multilayer model ray-tracing method radiative transfer coefficient
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