Exploring Solar Energy Potential using Solar Radiation GIS Toolset - A Case of College of Natural Resources, Lobesa, Punakha

Ugyen Thinley
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Abstract

This study aimed to explore solar energy potential on a small landscape (campus of the College of Natural Resources) using topography of fine spatial resolution that can detect number of rooftops feasible for harnessing solar energy. Digital elevation model was derived by extracting elevation values from the Google Earth Pro which was then used as input for solar radiation calculation. The total radiation that the campus received was 2,100 kWh over 259 days and the result was validated using power access viewer and global solar atlas databases. The monthly average radiation indicated that October, November, December and January are the radiation peaking months at the college campus. Twenty two rooftops were identified to receive more than or equal to 3.08 kWh/m2/day, while the remaining rooftops receiving less than or equal to 3.08 kWh/m2/day. The college has potential of supplementing power shortage during lean hydro season using the rooftop solar panels.
利用太阳辐射GIS工具集探索太阳能潜力——以普纳卡州Lobesa自然资源学院为例
本研究旨在利用精细空间分辨率的地形,探索小型景观(自然资源学院校园)的太阳能潜力,可以探测到可利用太阳能的屋顶数量。从Google Earth Pro中提取高程值,得到数字高程模型,并将其作为太阳辐射计算的输入。校园在259天内接收到的总辐射为2100千瓦时,结果通过电源访问查看器和全球太阳地图集数据库进行了验证。月平均辐射表明,10月、11月、12月和1月是高校校园辐射的高峰月份。22个屋顶的接收量大于或等于3.08 kWh/m2/天,而其余屋顶的接收量小于或等于3.08 kWh/m2/天。利用屋顶太阳能电池板,该学院有可能在缺水季节补充电力短缺。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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