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Design and performance analysis of a thermoelectric air-conditioning system driven by solar photovoltaic panels

TRNSYS公司 性能系数 空调 光伏系统 环境科学 可再生能源 热舒适性 冷负荷 光伏 冷却能力 热电冷却 汽车工程 太阳能空调 制冷 热电效应 热电发电机 热的 核工程 机械工程 气象学 电气工程 工程类 制冷剂 热力学 热交换器 物理
作者
Moustafa M. Aboelmaaref,Mohamed E. Zayed,Ammar H. Elsheikh,Ahmed A. Askalany,Jun Zhao,Wenjia Li,K. Harby,S. Sadek,Mahmoud Ahmed
出处
期刊:Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science [SAGE]
卷期号:235 (20): 5146-5159 被引量:39
标识
DOI:10.1177/0954406220976164
摘要

Solar cooling technologies can play a vital role in renewable energy applications development. Thermoelectric systems have shown promising advantages over traditional refrigeration systems such as high thermal comfort, active adaptability, no moving parts, and refrigerants free. In this work, a novel thermoelectric air-conditioning system (TEACS) driven by photovoltaics (PV) is experimentally and theoretically investigated under the hot climate conditions of Sohag city (30°26′N, 42°31′E), Egypt for air conditioning of a typical small-size office room under different thermal loads. During day time, PV panels produce electricity which utilized to drive the TEACS directly and to charge batteries that store electricity to be exploited during nighttime. Moreover, a numerical model implemented in TRNSYS coupled with MATLAB software is developed to evaluate the performance of the proposed TEACS. The influences of varying the input electric current on the coefficient of performance (COP), cooling capacity, and average air room temperature are also studied. The results showed that a design point with an input current of 2.5 A for a cooling capacity of 30 W could be selected to maximize the cooling performance, in which the COP of the TEACS is found to be 2.2. Moreover, the daily average air temperature of the conditioned room was found to be 23.5, 25.5, 27.5, 28.5, and 30.5 °C for internal thermal loads of 0.0 W, 65.0 W,130.0 W, 195.0 W, and 260.0 W, respectively, at average air intake temperature of 36 °C, daily average input current of 4.28 A and air volume flow rate of 14.4 m 3 /h. It can be concluded that the TEACS powered by PV could be considered as a proper alternative to the traditional vapor compression systems.
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