Exergy and improvement potential of hybrid photovoltaic thermal/thermoelectric (PVT/TE) air collector

被引:71
|
作者
Nazri, Nurul Syakirah [1 ]
Fudholi, Ahmad [1 ]
Mustafa, Wan [1 ]
Yen, Chan Hoy [1 ]
Mohammad, Masita [1 ]
Ruslan, Mohd Hafidz [1 ]
Sopian, Kamaruzzaman [1 ]
机构
[1] Univ Kebangsaan Malaysia, Solar Energy Res Inst, Bangi 43600, Selangor, Malaysia
来源
RENEWABLE & SUSTAINABLE ENERGY REVIEWS | 2019年 / 111卷
关键词
Solar energy; Exergy analysis; Solar collector; Thermal; Electrical; Thermoelectric; SOLAR DRYING SYSTEM; CARBON CREDIT ANALYSIS; PERFORMANCE ANALYSIS; EXERGOECONOMIC ANALYSIS; ENVIROECONOMIC ANALYSIS; DIFFERENT OBSTACLES; THERMAL COLLECTOR; WATER COLLECTOR; ENERGY ANALYSIS; PV MODULE;
D O I
10.1016/j.rser.2019.03.024
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In this paper, a review of exergy and improvement potential (IP) of solar thermal systems is presented. The review includes exergy analysis of photovoltaic thermal (PVT) systems, solar drying systems and solar collectors. Solar collectors, which are the most essential components of solar thermal systems, receive solar energy and convert it into thermal energy. Since the solar/PVT collector system is an essential component when the design of sustainability is considered, exergy analysis, which provides a more representative performance rating. In addition, a theoretical and experimental performance of hybrid photovoltaic thermal/thermoelectric (PVT/TE) air collector is investigated. A steady-state thermal analysis of a hybrid PVT/TE air collector is developed to predict air outlet and photovoltaic (PV) temperatures. The predicted results are in close agreement with the experimental study. The percentage error of air outlet and PV temperatures between theoretical and experimental value is 1.1% and 2.6% respectively. On the other hand, the simulated model is then used to study the performances of a hybrid PVT/TE air collector using exergy analysis for the mass flow rate ranging between 0.001 kg/s to 0.15 kg/s and a solar radiation of 600 W/m(2). The effect of mass flow rate on exergy efficiency and an advance prospective are observed. The optimum exergy efficiency of PVT/TE obtained is relatively 0.38. In addition, IP is proposed in this study.
引用
收藏
页码:132 / 144
页数:13
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