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The geometric-optics relation between surface slope error and reflected ray error in solar concentrators

机译:聚光器中表面坡度误差与反射射线误差之间的几何关系

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In typical reflection-based solar concentrators, surface slope error mainly causes the reflected ray to deviate from the specular reflection direction and eventually from a target. Hence a fundamental understanding of the relation between surface slope error and reflected ray error is important for evaluating optical performance of solar concentrators. It has been widely accepted that when surface slope error follows the Rayleigh distribution, reflected ray error also follows. However, including this conventional relation, the relevant studies to date relied on purely geometric calculations and overlooked features of light scattering. In this study, the bidirectional reflectivity from geometric optics in light scattering theory is employed to derive a more rigorous distribution of reflected ray error. For the reflector surface without refraction, the geometric-optics relation demonstrates that the conventional relation holds only at normal incidence and becomes more and more incorrect as the incidence angle increases because of diminishing scattering effects. As a result, the conventional relation underestimates the peak flux produced by solar concentrators and their optical performance. The treatment that is able to account for scattering features and thereby overcome the limitations of the conventional relation is suggested in the use of the Monte Carlo ray-tracing method.
机译:在典型的基于反射的太阳能聚光器中,表面坡度误差主要导致反射光线偏离镜面反射方向,最终偏离目标。因此,对表面斜率误差与反射射线误差之间关系的基本理解对于评估太阳能集中器的光学性能很重要。广泛接受的是,当表面坡度误差遵循瑞利分布时,反射光线误差也随之发生。但是,包括这种常规关系,迄今为止,相关研究仅依赖于几何计算,而忽略了光散射的特征。在这项研究中,采用了光散射理论中几何光学的双向反射率来得出更严格的反射光线误差分布。对于没有折射的反射器表面,几何光学关系表明,传统关系仅在法向入射时成立,并且由于散射效应的减小,随着入射角的增加,这种关系变得越来越不正确。结果,传统关系低估了太阳能集中器产生的峰值通量及其光学性能。在蒙特卡洛射线追踪法的使用中提出了一种能够解决散射特征从而克服传统关系局限性的处理方法。

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