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Optical coupling of grouped tunnels to decrease the energy and materials consumption of their lighting installations

机译:分组隧道的光学耦合降低其照明装置的能量和材料消耗

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The increasing improvement of tunnelling technology allows more and more complex tunnels every day. Thus, together with the classical road tunnels through mountains, with lengths generally under two or three of kilo-meters, longer and longer underground roads under rivers and seas, as well as tunnels in geomorphically complex terrains, are being opened continuously. Besides the geotechnical difficulty of these infrastructures, the consumption of their lighting installations in terms of energy and raw materials due to the high number of projectors, total cost and maintenance, are a major concern between public administrations in many countries. In this scenario, there is an especially critical kind of tunnels due to their high energy consumption: the groups of tunnels under very near mountains, that is grouped tunnels separated by opencast roads with lengths about few hundred meters. Due to the special characteristics of the human visual adaptation, whenever one driver leaves one tunnel during daytime (when most displacements take place), his visual system loses adaptation to darker environments, and needs a new threshold zone with high luminance levels when entering a new tunnel even if it begins in just a few meters. This converts grouped tunnels in paradoxical infrastructures: the cost of their lighting installations is much higher than if there were only one tunnel going under the whole mountains chain. In this work, it is proposed an optical coupling of grouped tunnels with translucent red structures to avoid the loss of visual adaptation to weakly illuminated environments and the consequent high demands of lighting levels. The savings with of proposal are presented and compared with the current situation in the groups of tunnels around the world.
机译:隧道技术的提高越来越好,每天允许越来越复杂的隧道。因此,与山脉的古典道路隧道一起,一直在两到三个千米下的长度,河流和海洋下的地下道路更长,更长的地下道路,以及格式复杂地形的隧道,连续打开。除了这些基础设施的岩土困难之外,由于投影仪数量大,总成本和维护量大的能源和原材料,他们的照明装置的消耗是许多国家的公共政府之间的主要问题。在这种情况下,由于它们的高能量消耗,有一种特别关键的隧道:山上非常近的隧道组,这些隧道是由Opencast道路分开的隧道,长度大约几百米。由于人类视觉适应的特点,每当一个驾驶员在白天(当大多数位移发生时)时,他的视觉系统会失去更暗的环境,并在进入新的亮度级别时需要一个新的阈值区域隧道即使它始于几米。这将分组隧道转换为矛盾的基础设施:其照明装置的成本远高于整个山脉下面的隧道。在这项工作中,提出了具有半透明红色结构的分组隧道的光学耦合,以避免对弱照射环境的视觉适应丢失以及随后对照明水平的大需求。提出了关于提案的节省,并与世界各地隧道组中的现状进行了比较。

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