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Development of a fiber daylighting system based on a small scale linear Fresnel reflector: Theoretical elements

机译:基于小型线性菲涅耳反射镜的光纤日光系统的开发:理论要素

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This paper describes the details of the design of a small scale linear Fresnel reflector (SSLFR) applied to a daylighting system based on optical fiber bundles (OFBs). This study shows the influence of the SSLFR design parameters (mirror width, mirror length, reflector cavity height, and number of mirrors) and the parameters of the optical fiber. A new reflector cavity is designed, consisting of two right trapeziums. Each trapezium collects the incident solar irradiance of the mirrors located at each side of the central mirror. The reflector cavity has two focal points, located in the middle of the aperture of each trapezium. A MATLAB code was developed in order to obtain the optical efficiency of the new reflector cavity and numerical simulations are presented. Two SSLFR configurations, C-1 and C-2, are studied. C-1 is the configuration used in large-scale LFRS and does not consider lateral movement of the OFBs, as is the case in configuration C-2. Each of these configurations is analyzed considering the optimal length and longitudinal position of the OFB. Numerical simulations are presented for both configurations using the MATLAB environment. Power consumption based calculations are carried out using the lumen method and the potential electric energy saving is evaluated. The illumination levels obtained are then compared using the lighting design software DIAlux, a free software widely used as a planning tool by lighting designers. The results show a considerable electric energy saving with configuration C-2, although configuration C-1 also presents good energy savings.
机译:本文描述了应用于基于光纤束(OFB)的日光照明系统的小型线性菲涅尔反射镜(SSLFR)的设计细节。这项研究显示了SSLFR设计参数(反射镜宽度,反射镜长度,反射镜腔高度和反射镜数量)和光纤参数的影响。设计了一个新的反射腔,该反射腔由两个右梯形组成。每个梯形收集位于中央反射镜两侧的反射镜的入射太阳辐照度。反射腔有两个焦点,位于每个梯形孔的中间。为了获得新型反射腔的光学效率,开发了MATLAB代码,并进行了数值模拟。研究了两个SSLFR配置C-1和C-2。 C-1是在大型LFRS中使用的配置,不像配置C-2那样考虑OFB的横向移动。考虑到OFB的最佳长度和纵向位置,对每种配置进行了分析。使用MATLAB环境对两种配置都提供了数值模拟。使用流明法进行基于功耗的计算,并评估潜在的电能节省。然后使用照明设计软件DIAlux(获得照明的设计师广泛用作计划工具的免费软件)比较获得的照明水平。结果表明,配置C-2可以节省大量电能,尽管配置C-1也可以节省大量电能。

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