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GIS-Based Irrigation Dams Potential Assessment of Floating Solar PV System

机译:基于GIS的灌溉水坝浮动太阳能光伏系统的潜在评估

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The majority of the Ethiopian population lives in rural areas and uses wood for domestic energy consumption. Using wood and fuel for domestic uses accounts for deforestation and health problems, which is also dangerous for the environment. The Ethiopian government has been planning to generate power from available renewable resources around the community. Therefore, determining the water surface potential of energy harvesting with floating solar photovoltaic system by using geographic information system is used to support decision-makers to use high potential areas. To identify useable areas for floating solar photovoltaic, factors that affect the usability were identified and weighted by using Analytical Hierarchy Processes. Thus, weighted values and reclassified values were multiplied to do the final usability map of floating solar photovoltaic with ArcGIS software. Due to the improper location of floating solar photovoltaic, efficiency is dropped. Therefore, the objective of this study was to identify the most usable surface of water bodies in Amhara regional, state irrigation dams for generating electrical power. The usability of the water surface for floating solar photovoltaic power plant was 63.83%, 61.09%, and 57.20% of Angereb, Rib, and Koga irrigation dams, respectively. The majority of the usable areas were found in the middle of the water surface. Nature water surface is a key factor in generating solar energy; it affects the floating solar photovoltaic and irradiance coming to the solar photovoltaic panel surface.
机译:大多数埃塞俄比亚人口生命在农村地区,并利用木材用于国内能源消耗。使用木材和国内燃料的用途占砍伐森林和健康问题,这对环境也是危险的。埃塞俄比亚政府一直计划从社区各地的可再生资源产生权力。因此,使用地理信息系统确定与浮动太阳能光伏系统的能量收集的水表面电位用于支持决策者使用高潜在区域。为了识别浮动太阳能光伏的可用区域,通过使用分析层次过程来识别和加权影响可用性的因素。因此,乘以加权值和重新分类值以进行浮动太阳能光伏的最终可用性图与ArcGIS软件。由于浮动太阳能光伏的位置不当,效率掉落。因此,本研究的目的是鉴定Amhara区域灌溉水坝中最可用的水体表面,用于产生电力。浮动太阳能光伏发电厂的水面积的可用性分别为63.83%,61.09%和57.20%的夜鹰,肋骨和Koga灌溉坝。在水面中间发现了大部分可用区域。自然水表面是产生太阳能的关键因素;它影响浮动太阳能光伏和辐照度,即将到达太阳能光伏板表面。

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