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Design of Solar Optical Fiber Lighting System for Enhanced Lighting in Highway Tunnel Threshold Zone: A Case Study of Huashuyan Tunnel in China

机译:公路隧道门槛区增强照明的太阳能光纤照明系统设计-以中国花树岩隧道为例

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摘要

In this paper, the principle, structural composition, materials, and characteristics of solar optical fiber lighting system were discussed. The different luminance requirements of different zones of highway tunnel were identified on the basis of the analysis of tunnel lighting considering drivers’ visually self-accommodating physiological function for luminance change. Taken Huashuyan Tunnel of G109 Highway located in Hohhot of Inner Mongolia in China as the case study, the system design of solar optical fiber lighting for enhanced lighting in threshold zone of highway tunnel was made. It was indicated through calculation that the design length of solar optical fiber enhanced lighting was related to the design speed, longitudinal slope, and overhead clearance of the tunnel, and the design luminance of solar optical fiber enhanced lighting was related to the luminance outside the tunnel, the design speed, and the design traffic flow of the tunnel. Luminance analysis of the solar optical fiber lighting system of Huashuyan Tunnel was made based on the on-site experiment. Also, the 3D illuminance simulation results by DIALux software were made to indicate that the solar optical fiber lighting system in Huashuyan Tunnel still well met the enhanced lighting demand even not considering the contribution of LED lighting.
机译:本文讨论了太阳能光纤照明系统的原理,结构组成,材料和特点。公路隧道不同区域的不同亮度要求是在对隧道照明进行分析的基础上确定的,其中考虑了驾驶员对于亮度变化的视觉自适应生理功能。以内蒙古呼和浩特市G109高速公路花树岩隧道为例,对高速公路隧道门槛区增强照明的太阳能光纤照明系统设计进行了设计。通过计算表明,太阳能光纤增强照明的设计长度与隧道的设计速度,纵向坡度和高架间隙有关,而太阳能光纤增强照明的设计亮度与隧道外部的亮度有关。 ,设计速度以及隧道的设计流量。在现场试验的基础上,对花树岩隧道太阳能光纤照明系统进行了亮度分析。此外,通过DIALux软件进行的3D照度模拟结果表明,即使不考虑LED照明的贡献,花树岩隧道中的太阳能光纤照明系统仍然能够很好地满足增强的照明需求。

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