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PERFORMANCE ANALYSIS OF PHOTOVOLTAIC THERMAL (PVT) PANELS CONSIDERING THERMAL PARAMETERS

机译:考虑热参数的光伏热(PVT)面板的性能分析

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Solar PVT panels are getting popular for wider spectrum of applications for concurrent heat and power generation (CHP). These panels can provide the heating demand of buildings while generating electricity which becomes ideal for building applications of urban energy systems. Energy flow analysis of such panels and performance analysis of such systems becomes essential to design PVT systems matching with the operating conditions. A number of studies have used both theoretical and experimental methods to optimize PVT. However, this task is challenging due to interrelation of CHP production based on two different phenomena where classical optimization methods cannot be applied directly. Hence basic performance analysis considering primary design parameters plays a major role. In this study, a computational model is developed to evaluate sensitivity of design, operating and climatic parameters for a hybrid PVT system and to analyze the performances of PVT for five different design configurations. Five main configurations of the PVT system are considered based on the heat transfer fluid and the arrangements of glass and tedlar layers of PVT collector. This study presents comprehensive performance analysis conducted to evaluate the sensitivity of mass flow rate and working fluid temperature for the five different design configurations of PVT panels. Results show that glass-tedlar water collector performs better when compared to other configurations. Subsequently, the sensitivity of wind speed and solar irradiation is evaluated. The behavior of thermal and electrical efficiencies is analyzed at different wind speed and solar irradiation levels for a range of mass flow rates and working fluid temperatures. Important conclusions on the performance of PVT panels are given based on this detailed analysis.
机译:太阳能PVT面板在同时供热和发电(CHP)的广泛应用中越来越受欢迎。这些面板可提供建筑物的供暖需求,同时发电,非常适合城市能源系统的建筑物应用。这样的面板的能量流分析和这样的系统的性能分析对于设计与操作条件匹配的PVT系统变得至关重要。许多研究已经使用理论和实验方法来优化PVT。但是,由于基于两种不同现象的CHP生产之间的相互关系而无法直接应用经典优化方法,因此该任务具有挑战性。因此,考虑主要设计参数的基本性能分析起着重要作用。在这项研究中,开发了一种计算模型来评估混合PVT系统的设计,运行和气候参数的敏感性,并分析五种不同设计配置下PVT的性能。基于传热流体以及PVT收集器的玻璃层和玻璃屑层的布置,考虑了PVT系统的五个主要配置。这项研究提出了综合性能分析,以评估PVT面板的五种不同设计配置的质量流量和工作流体温度的敏感性。结果表明,与其他配置相比,玻璃钢水收集器的性能更好。随后,评估风速和太阳辐射的敏感性。针对一系列质量流量和工作流体温度,在不同的风速和太阳辐射水平下分析了热效率和电效率的行为。在此详细分析的基础上,给出了有关PVT面板性能的重要结论。

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