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Width of the specular peak perpendicular to the principal plane for rough surfaces

机译:粗糙表面的垂直于主平面的镜面反射峰的宽度

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摘要

The bidirectional reflectance distribution function (BRDF) model developed by Torrance and Sparrow [J. Opt. Soc. Am. 57, 1105-1114 (1967)] is used to describe the specular reflection of rough surfaces. We compare this model with the BRDF measurements of four manmade surfaces with different roughnesses. The model can be used to describe the basic features of the measured BRDFs. We found that the width of the specular peak perpendicular to the principal plane decreases strongly with an increasing illumination zenith angle in the data as well as in the model. A model analysis shows that the width is approximately proportional to the cosine of the illumination angle θ_(i), and the deviations are determined by the roughness of the surface. This relationship is accompanied by an increase in reflectance in the specular direction in the principal plane that is 1/cos θ_(i) stronger than the increase for a perfectly smooth surface.
机译:Torrance和Sparrow开发的双向反射率分布函数(BRDF)模型[J.选择。 Soc。上午。 57,1105-1114(1967)]用于描述粗糙表面的镜面反射。我们将此模型与四个具有不同粗糙度的人造表面的BRDF测量结果进行了比较。该模型可用于描述所测BRDF的基本特征。我们发现,在数据以及模型中,垂直于主平面的镜面反射峰的宽度随着照明天顶角的增加而强烈减小。模型分析表明,宽度大约与照明角度θ_(i)的余弦成比例,并且偏差由表面粗糙度决定。这种关系伴随着在主平面中镜面方向上的反射率的增加,即比完全光滑的表面的增加强1 / cosθ_(i)。

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