Mathematical modeling of a photovoltaic thermal (PV/T) collector

Gamze Soytürk, Önder Kizilkan, M. A. Ezan
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Abstract

Even though the performance of photovoltaic/thermal (PV/T) panels had been examined both computationally and experimentally for some time, the thermal models created in earlier research were mostly steady-state models for estimating the annual yields. In this study, the solar thermal collector and photovoltaic (PV) cells are combined to create the PV/T collector, and water-ethylene glycol is utilized as a coolant to lower the temperature of the PV panels. The goal of this study is to analyze a water-ethylene glycol-based PV/T collector numerically. Time-dependent dynamic analyzes were performed using the MATLAB software program. Investigations were also done into how the electrical power produced and the temperatures of the fluid outlet and PV/T surface changed over time. As a result of the annual analysis, the maximum power of PV/T is calculated as 155 W. Also, the maximum surface temperature of PV/T panel’s is 56.62°C.
光伏热(PV/T)集热器的数学建模
尽管光伏/热(PV/T)面板的性能已经在计算和实验上进行了一段时间的研究,但早期研究中创建的热模型大多是用于估计年产量的稳态模型。在这项研究中,太阳能集热器和光伏(PV)电池相结合,形成PV/T集热器,并利用水乙二醇作为冷却剂来降低PV板的温度。本研究的目的是对水-乙二醇基PV/T集热器进行数值分析。利用MATLAB软件程序进行随时间变化的动态分析。研究人员还对电力的产生、流体出口和PV/T表面的温度随时间的变化进行了调查。经年度分析,PV/T最大功率计算为155w。PV/T面板的最高表面温度为56.62℃。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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