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首页> 外文期刊>Applied optics >Application of the three-component bidirectional reflectance distribution function model to Monte Carlo calculation of spectral effective emissivities of nonisothermal blackbody cavities
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Application of the three-component bidirectional reflectance distribution function model to Monte Carlo calculation of spectral effective emissivities of nonisothermal blackbody cavities

机译:三成分双向反射率分布函数模型在非等温黑体腔光谱有效发射率的蒙特卡罗计算中的应用

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摘要

We applied the bidirectional reflectance distribution function (BRDF) model consisting of diffuse, quasispecular, and glossy components to the Monte Carlo modeling of spectral effective emissivities for nonisothermal cavities. A method for extension of a monochromatic three-component (3C) BRDF model to a continuous spectral range is proposed. The initial data for this method are the BRDFs measured in the plane of incidence at a single wavelength and several incidence angles and directional-hemispherical reflectance measured at one incidence angle within a finite spectral range. We proposed the Monte Carlo algorithm for calculation of spectral effective emissivities for nonisothermal cavities whose internal surface is described by the wavelength-dependent 3C BRDF model. The results obtained for a cylindroconical nonisothermal cavity are discussed and compared with results obtained using the conventional specular-diffuse model.
机译:我们将由漫反射,准峰和光泽分量组成的双向反射率分布函数(BRDF)模型应用于非等温腔的光谱有效发射率的蒙特卡洛模型。提出了一种将单色三分量(3C)BRDF模型扩展到连续光谱范围的方法。此方法的初始数据是在有限的光谱范围内在单个波长和几个入射角在入射平面上测得的BRDF,以及在一个入射角下测得的定向半球反射率。我们提出了蒙特卡罗算法,用于计算非等温腔的光谱有效发射率,该非等温腔的内表面由与波长相关的3C BRDF模型描述。讨论了圆柱非等温腔获得的结果,并将其与使用常规镜面扩散模型获得的结果进行了比较。

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