Energy analysis of partially covered number (N) of photovoltaic thermal-compound parabolic concentrator collectors connected in series at constant collection temperature mode

R. Tripathi, S. Tiwari, G. Tiwari
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引用次数: 12

Abstract

In present study, study has taken attempt to show the analysis of N-number of photovoltaic thermal (PVT)-compound parabolic concentrator (CPC) water collectors connected in series water collectors under constant collection temperature mode for the point of user's demand unlike constant flow rate mode. The performance has been examined for thermal energy, thermal exergy and overall thermal energy of partially covered (N) number of Photovoltaic thermal-compound parabolic concentrator collectors connected in series has been analyzed. Here, the collector of present system is partially covered with 50% of PV module. The thermal modelling has been developed with basic energy balance equation of each component of proposed system. The outlet at Nth of partially covered Photovoltaic thermal (PVT)-compound parabolic concentrator (CPC) collectors has been obtained. The expression of analytical temperature dependent electrical efficiency of proposed system has been derived. The analysis has been carried out for clear day condition in month of January at New Delhi, India. The maximum thermal energy has been found 18.14 kWh per day and electrical energy has been found 1.30 kWh per day with constant outlet collection temperature at 67 °C.
恒收集温度模式下部分覆盖数(N)串联光伏热复合抛物面聚光集热器能量分析
在本研究中,本研究尝试对光伏热(PVT)-复合抛物式聚光器(CPC)串联集水器在恒集温模式下与恒流量模式下对用户需求点的n个数进行分析。对部分覆盖(N)个串联的光伏热复合抛物型集热器的热能、热用能和总热能性能进行了研究。在这里,目前系统的集热器部分被50%的光伏组件覆盖。利用系统各组成部分的基本能量平衡方程建立了热模型。得到了部分覆盖光伏热(PVT)-复合抛物型聚光器(CPC)集热器第n处的出口。推导了系统的解析温度相关的电效率表达式。对印度新德里1月份的晴空条件进行了分析。最大热能为18.14千瓦时/天,电能为1.30千瓦时/天,出口收集温度恒定在67°C。
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