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New mechanism of a daylighting system using optical-fiber-less design for illumination in multi-storey building

机译:多层建筑光纤光纤设计模拟系统的新机制

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In this study, the fully new scheme of the daylighting system is devised and a few avenues are proposed toward large scale illumination area with the highly efficient luminous flux and modest cost. Rather than a previously common design, consisting of a sole system, we work out two subsystems for a generic daylighting system: outdoor and indoor subsystems. For the outdoor subsystem, aiming to guide light deeply and efficiently for a given multi-storey building, we first capitalize on a simple design of two mirrors to collect the sunlight and transport it in free-space, which negligibly penalizes the optical loss. To guide light to each particular area inside building, we further propose two options for the indoor subsystem taking into consideration between cost and performance: first with the Fresnel lens + circular plastic optical fiber (POF) bundle and second with the waveguide concentrator + flat POF bundle. The quantitative assessment unravels that the optical efficiency of the latter is higher than that of the former, 63.7 % vs 48.7 %. Still, the real implementation of the Fresnel lens + circular POF is more prone and we indeed demonstrate a principle-of-concept system. Such design also preferably implements with a LED panel, in an embodiment of a so-called hybrid daylighting system, to grant light in overcast and night-time situations. This proposed daylighting system also enables exceptional merit in calculated energy saving, up to roughly 46.5% in a year with sunlight condition as in Ho Chi Minh City (Vietnam), as electrical light is used properly and barely. All things taken into account, this approach indicates a likely perspective for fostering a new generation of the daylighting system that making use of sparingly optical fiber.
机译:在这项研究中,设计了日光系统的完全新的方案,并提出了具有高效发光通量和适度成本的大规模照明区域的一些途径。不是由唯一的系统组成的先前常见的设计,我们为通用日光系统制作了两个子系统:室外和室内子系统。对于户外子系统来说,旨在为特定的多层建筑引导光线,我们首先首先用两个镜子设计的简单设计来收集阳光并将其运输在自由空间中,从而忽视了光学损失。要指导灯光到建筑物内的每个特定区域,我们还在成本和性能之间考虑到室内子系统的两种选择:首先与菲涅耳透镜+圆形塑料光纤(POF)束和带有波导浓缩器+平POF的第二个捆。定量评估解除说,后者的光学效率高于前者,63.7%vs 48.7%。尽管如此,菲涅耳透镜+圆形POF的实际实施更容易,我们确实展示了概念原则系统。这种设计还优选地利用LED面板,在所谓的混合推光系统的实施例中,以授予阴云密布和夜间情况的光。这一提出的日光系统还使得在计算的节能方面实现了卓越的优点,每年高达约46.5%,与阳光条件相同,如胡志明市(越南),因为电气光线被适当地使用,勉强使用。所有考虑的事情都考虑在内,这种方法表明了一种可能的可能性,可以促进新一代日光制度,这是利用稀缺的光纤。

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