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Study of operation performance for a solar photovoltaic system assisted cooling by ground heat exchangers in arid climate, China

机译:太阳能光伏系统运行性能研究,中国干旱气候地下热交换器辅助冷却

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Photovoltaic power generation application with advantages of sustainability and low emission is limited on its low photovoltaic (PV) efficiency mainly due to high panel temperature. In this paper, a solar photovoltaic system coupled by ground heat exchangers (PV-GHEs system) is proposed to reduce the operation temperature of panels and keep a high PV efficiency. Taking Tikanlik with typical arid climate of northwestern China as an example, a numerical model based on the software TRNSYS is built and its reliability are validated based on an actual thermal response test data. The simulation results show that the PV-GHEs system can reduce the panel temperature by 26.8% and increase the annual electricity yield by 7.9%, compared with conventional PV systems. Sensitivity analysis highlights the influences of environmental, geological and design parameters on the system performance. For the long-term operation, a gradually growing ground temperature is unfavorable and may weaken the heat transfer between GHEs and the surrounding ground. For the case of Tikanlik, the growing rate of the ground temperature is 0.67 degrees C per year and a minimum distance of 10 m between boreholes is recommended when more GHEs are needed. Finally, a life cycle cost analysis of the PV-GHEs system is investigated. (C) 2020 Elsevier Ltd. All rights reserved.
机译:光伏发电,具有可持续性和低排放的优点的应用在其低光伏(PV)效率上限制,主要是由于高面板温度。本文提出了一种由地热交换器(PV-粗嘴系统)联接的太阳能光伏系统,以减少面板的操作温度并保持高光伏效率。以Tikanlik为例,以中国西北部为例,建立了一个基于软件Trnsys的数值模型,其可靠性基于实际的热响应测试数据验证。仿真结果表明,与常规光伏系统相比,PV-沟系统可将面板温度降低26.8%,并将年产量提高7.9%。敏感性分析突出了环境,地质和设计参数对系统性能的影响。对于长期操作,逐渐增长的地温不利,可能削弱灌木和周围地之间的热传递。对于Tikanlik的情况下,接地温度的生长速度为0.67摄氏度,建议在需要更多嘴泡时钻孔之间的最小距离。最后,研究了PV-GUES系统的生命周期成本分析。 (c)2020 elestvier有限公司保留所有权利。

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