光伏系统
热的
环境科学
辐照度
核工程
太阳辐照度
太阳能
体积流量
火用
热能
能量流
能量(信号处理)
材料科学
汽车工程
热力学
工艺工程
电气工程
工程类
数学
气象学
物理
光学
统计
作者
Yasushi Morita,Tôru Fujisawa,Tatsuo Tani
标识
DOI:10.1541/ieejias.119.81
摘要
Photovoltaic/thermal hybrid panel is a high efficient energy converter which supplies electrical energy and thermal energy from solar energy. In this paper, we clarified characteristics of two types of PV/Ts' change by means of environment condition and fluid flow rate, using numerical analysis. As a result, photovoltaic efficiencies came to 9.61%in PV/TA, 10.56%in PV/TB respectively at Tc=25°C, and thermal ones 52.11%in PV/TA, 40.14%in PV/TB respectively at Tl=40°C, Irr=800W/m2. From this result, we propose some design points to construct the optimum structure of PV/T. Next, we adopted exergetic evaluation to evaluate electrical energy and thermal energy quantitatively. As a result, we could confirm the existence of flow rate maximizing the total efficiency (say optimum flow rate) on some environment condition, and could define the optimum operating condition. Moreover we compare exergetic efficiencies on optimum operating conditions (say max. exergetic efficiency) under various environment conditions with PV and PV/TA and PV/TB. A rise of max. exergetic efficiency to increasing irradiance came to -3.6%/kW•m-2, +3.6%/kW•m-2, +1.4%/kW•m-2 respectively. Nevertheless we could confirm a hybrid-izing merit to high irradiance.
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