Study on the PCM flat-plate solar collector system with antifreeze characteristics

被引:57
|
作者
Zhou, Fan [1 ]
Ji, Jie [1 ]
Yuan, Weiqi [1 ]
Zhao, Xudong [2 ]
Huang, Shengjuan [1 ]
机构
[1] Univ Sci & Technol China, Dept Thermal Sci & Energy Engn, 96 Jinzhai Rd, Hefei, Anhui, Peoples R China
[2] Univ Hull, Sch Engn, Kingston Upon Hull HU6 7RX, N Humberside, England
基金
中国国家自然科学基金;
关键词
Flat-plate solar collector system; Phase change material; Antifreeze performance; PHASE-CHANGE; HEAT-TRANSFER; THERMAL PERFORMANCE; WATER-HEATER;
D O I
10.1016/j.ijheatmasstransfer.2018.09.114
中图分类号
O414.1 [热力学];
学科分类号
摘要
This paper proposes a flat-plate solar collector system (FPSCs) with antifreeze characteristics which uses the phase change material (PCM) to store up a moderate amount of thermal energy during the daytime and release the energy during the night to prevent the FPSCs from freezing damage. Previous studies about the FPSCs exploiting the PCM are mainly focus on the purpose of balancing the tank water temperature between the daytime and night. In the present work, the study on the characteristics of the PCM-FPSCs for the purpose of antifreeze has been conducted. A mathematical model with high precision for the daytime working and night freezing of the system is present. The daytime working and night antifreeze performance of the system are evaluated. The results show that the conventional FPSC system will get frozen when the daily average temperature is less than 5 degrees C. The PA-FPSC system can work when the daily average temperature is in the range of 0-5 degrees C. (C) 2018 Elsevier Ltd. All rights reserved.
引用
收藏
页码:357 / 366
页数:10
相关论文
共 50 条
  • [1] Study of Dynamics of Heat Transfer in the Flat-Plate Solar Collector
    Aleksiejuk-Gawron, Joanna
    Chochowski, Andrzej
    PROCESSES, 2020, 8 (12) : 1 - 15
  • [2] EFFICIENCY OF LIQUID FLAT-PLATE SOLAR ENERGY COLLECTOR WITH SOLAR TRACKING SYSTEM
    Chekerovska, Marija
    Filkoski, Risto Vasil
    THERMAL SCIENCE, 2015, 19 (05): : 1673 - 1684
  • [3] Experimental and numerical study of the freezing process of flat-plate solar collector
    Zhou, Fan
    Ji, Jie
    Cai, Jingyong
    Yu, Bendong
    APPLIED THERMAL ENGINEERING, 2017, 118 : 773 - 784
  • [4] Analog model of dynamics of a flat-plate solar collector
    Aleksiejuk, Joanna
    Chochowski, Andrzej
    Reshetiuk, Volodymyr
    SOLAR ENERGY, 2018, 160 : 103 - 116
  • [5] Numerical simulation for structural parameters of flat-plate solar collector
    Zhang Jiandong
    Tao Hanzhong
    Chen Susu
    SOLAR ENERGY, 2015, 117 : 192 - 202
  • [6] Flat-Plate Solar Collector in Transient Operation: Modeling and Measurements
    Saleh, Ahmad M.
    Mueller, Donald W., Jr.
    Abu-Mulaweh, Hosni I.
    JOURNAL OF THERMAL SCIENCE AND ENGINEERING APPLICATIONS, 2015, 7 (01)
  • [7] HEAT TRANSFER IN A LOW LATITUDE FLAT-PLATE SOLAR COLLECTOR
    Oko, Chika Ogbonna Chima
    Nnamchi, Stefen Ndubuisi
    THERMAL SCIENCE, 2012, 16 (02): : 583 - 591
  • [8] Optimizing research on flat-plate solar collector based on field synergy theory
    Li, Zheng-yang
    Gong, Jing-hu
    Wang, Jiarui
    Lund, Peter D.
    ENERGY REPORTS, 2024, 12 : 1977 - 1986
  • [9] A comparative study on the performance of liquid flat-plate solar collector with a new V-corrugated absorber
    Fan, Man
    You, Shijun
    Gao, Xinlei
    Zhang, Huan
    Li, Bojia
    Zheng, Wandong
    Sun, Leizhai
    Zhou, Tingting
    ENERGY CONVERSION AND MANAGEMENT, 2019, 184 : 235 - 248
  • [10] Experimental comparative analysis of a flat plate solar collector with and without PCM
    Palacio, Mario
    Rincon, Anggie
    Carmona, Mauricio
    SOLAR ENERGY, 2020, 206 : 708 - 721