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首页> 外文期刊>Environmental progress & sustainable energy >Assessment of 50 kWp rooftop solar photovoltaic plant at The ICFAI University, Jaipur: A case study
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Assessment of 50 kWp rooftop solar photovoltaic plant at The ICFAI University, Jaipur: A case study

机译:斋浦尔伊菲岛大学50 kWp屋顶太阳能光伏厂评估 - 以案例研究

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Currently, India is espousing nonconventional energy sources at an express rate owing to concerns about climate change, emission of harmful greenhouse gases (GHG), and exhausting conventional energy sources. The solar photovoltaic (SPV) plants are, hence, expected to play a noteworthy role to meet energy security and sustainability goals. Contemporary studies reveal substantial ecological concerns associated with installing the ground mounted SPV plants in urban locations. Further observations depict that aforementioned plants need additional land, transmission, and distribution infrastructures. Consequently, rooftop SPV plants are the best solution to produce energy in urban locations, owing to the availability of a large number of empty rooftop spaces with least capacity expenditure. The present article discusses the techno-economic and ecological aspects of a 50 kWp rooftop SPV plant installed at ICFAI University, Jaipur. The plant has produced around 64.149 MWh in the year 2017. The technical assessment focuses on the effects of the meteorological parameters upon energy generation factors. The annual average final yield, reference yield, capacity utilization factor, and performance ratio found to be 106.9 kWh/kWp/month, 149.7 kWh/kWp/month, 14.64 and 70%, respectively. The economic parameters like net present value, internal rate of return, profitability index, and payback period are computed with 0-50% subsidy rates, which supports the financial viability of the plant. The plant contributed significantly to reducing GHG emissions by mitigating 102 t CO_2, 128 kg SO_2, 268 kg NO_X, and 7,033 kg ash in the year 2017 as evident from the ecological investigation. Statement of industrial relevance: Manufacturing industries are extremely power intensive, as they utilize a substantial amount of energy during the production process. The utilization of sustainable energy sources can considerably curtail the major overhead cost, that is, power, and at the same time minimize pollution. Solar energy utilization is a viable option as large spaces are available not only on rooftops but also allied spaces like parking lots of the industries for installation of rooftop SPV plants. The industries by virtue of location receive extended periods of unimpeded sunlight, as these setups are positioned in separate industrial areas away from residential clusters of buildings. Hence, the problems related to shading is eliminated. This makes solar plant setup more effective and functionally robust. The findings of the present work delineate a broad view on technical, economic, and ecological viability of the rooftop solar plant. The work, thus, emboldens industries to adopt strategies toward the installation of rooftop solar plant in their premises.
机译:目前,由于对气候变化,有害温室气体(GHG)排放和耗尽的传统能源,以表达速度,印度以表达率表示不传复的能源。因此,太阳能光伏(SPV)植物预计会发挥值得注意的作用,以满足能源安全和可持续发展目标。当代研究揭示了与在城市地区安装地面安装的SPV工厂相关的大量生态问题。进一步的观察描述,上述植物需要额外的土地,传输和分配基础设施。因此,由于大量空屋顶空间具有最小容量支出,屋顶SPV工厂是在城市地区生产能源的最佳解决方案。本文讨论了安装在ICFAI大学的50 kWp屋顶SPV工厂的技术经济和生态方面,斋浦尔。该工厂于2017年生产约64.149兆瓦。技术评估侧重于气象参数对能源产生因子的影响。年平均最终产量,参考产量,产能利用因子和绩效比例,分别为106.9千瓦时/千克/月,149.7千瓦时/千克/月,14.64和70%。净目前价值,内部回报,盈利指数和投资回收期等经济参数采用0-50%的补贴率计算,支持该工厂的金融活力。该工厂通过减轻102吨CO_2,128公斤SO_2,268公斤NO_X和7,033千克灰来减少GHG排放,从2017年开始,从生态调查中显而易见。工业相关声明:制造业是极其电力密集型,因为它们在生产过程中利用了大量的能量。可持续能源的利用可以大大限制主要的开销成本,即功率,同时最大限度地减少污染。太阳能利用是一个可行的选择,因为大型空间不仅可以在屋顶上使用,而且还可以在屋顶上提供覆盖的空间,如停车场,用于安装屋顶SPV工厂。凭借位置的行业将收到延长的阳光,因为这些设置位于远离住宅集群的独立工业区。因此,消除了与着色相关的问题。这使太阳能设备设置更有效且功能稳健。本作工作的调查结果描绘了屋顶太阳能厂的技术,经济和生态活力的广泛观点。因此,工作,使行业扶正行业,以采取在其场所安装屋顶太阳能厂的策略。

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