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Performance analysis of a floating photovoltaic covering system in an Indian reservoir

机译:印度水库浮动光伏覆盖系统的性能分析

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Floating photovoltaic (FPV) systems are one of the globally emerging technologies of renewable energy production that tend to balance the water–energy demand by effectively saving the evaporated water from reservoirs while generating electrical power. This study presents the performance analysis of a model FPV plant in an Indian reservoir. The Mettur dam reservoir located in Tamil Nadu, India with a hydroelectric power plant of 150-MW capacity is considered as a test case. The preliminary design of the FPV plant is proposed based on a detailed study of the key design elements and their suitability for Indian reservoirs. The proposed plant is numerically analysed for various tilt angles, mounting systems and tracking mechanisms in order to assess its potential power generation. A flat-mount system in landscape orientation was found to exhibit a high performance ratio. Further, a fixed-tilt FPV system with a panel slope of 10° and an FPV system with single-axis tracking were found to be suitable for the Mettur reservoir. Further, cost analysis of the FPV system is also presented along with the carbon-footprint estimation to establish the economic and environmental benefits of the system. The results show that the total potential CO 2 saving by a FPV system with tracking is 135 918.87 t CO 2 and it is 12.5% higher than that of a fixed-mount FPV system.
机译:浮动光伏(FPV)系统是可再生能源生产的全球新兴技术之一,通过有效地在产生电力的同时从储存器中节省蒸发的水来平衡水能需求。本研究提出了印度水库模型FPV工厂的性能分析。位于泰米尔纳德邦的Mettur Dam水库,印度有150 MW容量的水力发电设备被认为是一个测试用例。基于对关键设计元素的详细研究及其对印度水库的适用性,提出了FPV工厂的初步设计。用于针对各种倾斜角度,安装系统和跟踪机构进行数控分析所提出的植物,以便评估其潜在的发电。发现横向方向上的平板系统表现出高性能比。此外,发现具有10°的面板斜率和具有单轴跟踪的FPV系统的固定倾斜FPV系统适用于Mettur储库。此外,还介绍了FPV系统的成本分析以及碳足迹估计,以确定系统的经济和环境效益。结果表明,通过跟踪的FPV系统节省的总电位CO 2为135 918.87 T CO 2,它比固定安装FPV系统高12.5%。

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