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首页> 外文期刊>International energy journal >Effect of Ambient Temperature and Wind Speed on Performance Ratio of Polycrystalline Solar Photovoltaic Module: an Experimental Analysis
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Effect of Ambient Temperature and Wind Speed on Performance Ratio of Polycrystalline Solar Photovoltaic Module: an Experimental Analysis

机译:环境温度和风速对多晶太阳能光伏组件性能比的影响:实验分析

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摘要

Generation of electricity by clean development mechanism is the key area for researchers, many countries of the world has already shifted towards green energy. Energy is the key factor for the growth of any country. Per capita energy consumption is the significance of the progress of any nation. Recently the penetration of photovoltaic systems has increased to generate the electricity at grid or local level Although this technology has improved a lot however the performance of these systems is site dependent, which is affected by various environmental parameters like radiation, temperature and wind. An experiment is conducted in laboratory of GLA University, Mathura, India (hot and dry climate zone of India) to emphasis especially on wind effect. Two PV modules of same electrical and mechanical specifications are taken for experiment. To conduct experiment; different months of a year from various seasons are chosen. It has been observed that increased module temperature reduces performance but the cooling mechanism provided bring down the module temperature due to which a net energy gain is 7.69% in considered time. Performance measure indices i.e. PR is improved by 7.14%.
机译:通过清洁发展机制发电是研究人员的关键领域,世界上许多国家已经转向绿色能源。能源是任何国家发展的关键因素。人均能源消耗是任何国家进步的重要意义。最近,光伏发电系统的普及率提高了,可在电网或本地发电。尽管这项技术已得到很大改善,但是这些发电系统的性能却取决于地点,并受辐射,温度和风等各种环境参数的影响。在印度马图拉(印度的干热气候区)的GLA大学实验室进行了一项实验,重点是风效应。实验采用两个具有相同电气和机械规格的光伏组件。进行实验;选择一年中不同季节的不同月份。已经观察到,升高的模块温度降低了性能,但是所提供的冷却机制降低了模块温度,因此在所考虑的时间内净能量增益为7.69%。绩效指标(即PR)提高了7.14%。

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