日光与电力照明在商业建筑中的整合:尼泊尔的案例研究

O.S. Banjara, D. Bista, A. Bista, P. Bhusal
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引用次数: 1

摘要

日光是白天太阳发出的直接光和间接光的总和。将日光与电气照明相结合可以作为降低建筑物电力成本的手段。地理位置和天气条件有利于尼泊尔大部分地区平均12小时的日照,具有巨大的节能潜力。然而,尼泊尔的建筑规范并未承认日光的整合。此外,当代建筑设计缺乏采用照明工程技术来整合日光。本研究采用DIALux模型和仿真分析了尼泊尔典型商业建筑将日光与电灯相结合的可行性和效益。采用节能电灯与日光相结合的模拟方法,观察光照水平和光功率密度。在白天的表现方面,我们观察了三种不同天空类型的全年情况。对建筑结构的改造进行了研究,以整合采光组件。在研究的后半部分,对节能潜力和经济效益进行了分析。结果表明,在全天候条件下,将日光与建筑物中的电气照明混合在一起是可行的。观察到广泛的能源节约,并且随着日光成分的增加而增加。根据尼泊尔目前的技术和趋势,该研究提出的混合光源和日光组件的建议是可以实现的,同时也带来了节能、减少运营和降低维护成本的好处。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
INTEGRATION OF DAYLIGHT WITH ELECTRIC LIGHTING IN COMMERCIAL BUILDINGS: A CASE STUDY FROM NEPAL
Daylight attributes to the aggregate of direct and indirect lights originating from the sun during the daytime. Integrating daylight with electrical lighting can serve as a means to lessen electricity costs for buildings. Geographic location and weather conditions facilitate most of the areas of Nepal to receive on average 12 hours of daylight and have huge energy-saving potential. However, the integration of daylight has not been admitted in the building code of Nepal. Moreover, contemporary architectural design lacks employment of techniques illustrated by illumination engineering to integrate daylight. This study analyses the plausibility and benefits of integrating daylight with electric light for a typical commercial building of Nepal employing the DIALux model and simulation. Simulation integrating energy-efficient electric light and daylight was done to observe illumination levels and light power density. For daylight performance, year-round conditions were observed for three different sky types. Modification of building architecture to integrate daylighting components was also studied. In the later part of the study, analysis was done to observe energy-saving potential and financial benefits. Results designated the plausibility of blending daylight with electrical lighting in the building for all-sky conditions. Extensive energy thrift was observed and was higher with added daylight components. Recommendations of the study to blend light sources and incorporation of daylight components are attainable with current technology and trend in Nepal with accompanying benefits of energy-saving, reduced operation, and reduced maintenance cost.
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