Thermal performance analysis of a solar air collection-cascade storage system integrated with micro-heat pipe arrays

被引:9
|
作者
Diao, Yanhua [1 ]
Qi, Naixin [1 ]
Wang, Zeyu [1 ]
Zhao, Yaohua [1 ]
Chen, Chuanqi [1 ]
Wang, Zhen [1 ]
机构
[1] Beijing Univ Technol, Beijing Key Lab Green Built Environm & Efficient, Beijing 100124, Peoples R China
关键词
Cascade storage; Solar air heating system; Micro-heat pipe array; Latent heat storage; Thermal performance analysis; PHASE-CHANGE-MATERIALS; ENERGY-STORAGE; EXERGY ANALYSIS; NUMERICAL-ANALYSIS; OPTIMIZATION; ENHANCEMENT; UNIT; PCMS; DRYER; CONFIGURATION;
D O I
10.1016/j.solener.2021.06.071
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This study aims to establish a novel solar air collection-cascade storage system. Flat-plate micro-heat pipe arrays are applied in collector and heat storage units for heat transfer enhancement. To increase energy utilization ratio and improve system stability, a cascade storage configuration using paraffin and lauric acid is adopted. In the charging process, the cascade heat storage units store the solar irradiance collected by the collector in the phase change materials through the heat exchange fluid (air). During the discharging process, air takes away the heat stored in the phase change material. The heat transfer process and thermal performance of the system was analyzed experimentally in different volume flow rates from the perspectives of energy and exergy. The experimental results show that the air flow rate affects the thermal performance of the system significantly: as the volume flow rate increases, the heat collection power and efficiency show an upward trend, and the heat storage power and heat storage efficiency also show an increasing trend. Contrary to the increasing trend of exergy storage efficiency, exergy extraction efficiency decreases with increasing volume flow rate. An airflow rate of 220 m(3)/h obtains the highest average heat collection power and average heat collection efficiency, which are 542.0 W and 35.8%, respectively. In this condition, the average heat storage power and average heat storage efficiency of latent heat storage unit I are 175.1 W and 67.5%, respectively, and those of unit II are 136.0 W and 87.5%, respectively.
引用
收藏
页码:1271 / 1290
页数:20
相关论文
共 50 条
  • [31] Experimental study on the new type of electrical storage heater based on flat micro-heat pipe arrays
    Wang ZeYu
    Diao YanHua
    Zhao YaoHua
    Liang Lin
    Wang TengYue
    SCIENCE CHINA-TECHNOLOGICAL SCIENCES, 2018, 61 (02) : 219 - 231
  • [32] Visualization experiment and numerical study of latent heat storage unit using micro-heat pipe arrays: Melting process
    Wang, Zeyu
    Diao, Yanhua
    Zhao, Yaohua
    Chen, Chuanqi
    Wang, Tengyue
    Liang, Lin
    ENERGY, 2022, 246
  • [33] Thermal performance experiment of heat storage wall with flat micro heat pipe array in solar greenhouse
    Guan Y.
    Wang T.
    Wei M.
    Liu T.
    Hu W.
    Duan S.
    Nongye Gongcheng Xuebao/Transactions of the Chinese Society of Agricultural Engineering, 2021, 37 (03): : 205 - 212
  • [34] Experimental investigation on the thermal performance of Si micro-heat pipe with different cross-sections
    Hamidnia, Mohammad
    Luo, Yi
    Wang, Xiaodong
    Li, Congming
    MODERN PHYSICS LETTERS B, 2017, 31 (30):
  • [35] Performance analysis of a battery thermal management system based on phase change materials with micro heat pipe arrays
    He, Zhaoyang
    Li, Ruoming
    Yang, Li
    Mikulcic, Hrvoje
    Wang, Jin
    Cucek, Lidija
    ENERGY CONVERSION AND MANAGEMENT, 2024, 311
  • [36] Thermal performance analysis of ice thermal storage device based on micro heat pipe arrays: Role of bubble-driven flow
    Liu, Zichu
    Quan, Zhenhua
    Zhao, Yaohua
    Zhang, Wanlin
    Yang, Mingguang
    Shi, Junzhang
    RENEWABLE ENERGY, 2023, 217
  • [37] Experimental research on the performance of ice thermal energy storage device based on micro heat pipe arrays
    Liu, Zichu
    Quan, Zhenhua
    Zhao, Yaohua
    Jing, Heran
    Liu, Xin
    Wang, Lincheng
    APPLIED THERMAL ENGINEERING, 2021, 185
  • [38] Experimental study of the heat transfer characteristics of a new-type flat micro-heat pipe thermal storage unit
    Diao, Y. H.
    Wang, S.
    Zhao, Y. H.
    Zhu, T. T.
    Li, C. Z.
    Li, F. F.
    APPLIED THERMAL ENGINEERING, 2015, 89 : 871 - 882
  • [39] A SOLAR AIR COLLECTOR WITH INTEGRATED LATENT HEAT THERMAL STORAGE
    Charvat, Pavel
    Ostry, Milan
    Mauder, Tomas
    Klimes, Lubomir
    EFM11 - EXPERIMENTAL FLUID MECHANICS 2011, 2012, 25
  • [40] Thermal performance of packed bed heat storage system for solar air heaters
    Singh, Panna Lal
    Deshpandey, S. D.
    Jena, P. C.
    ENERGY FOR SUSTAINABLE DEVELOPMENT, 2015, 29 : 112 - 117