Experimental study on heating Kang with solar thermal and phase change energy storage

被引:0
|
作者
Li, Gang [1 ]
Chi, Lan [1 ]
Li, Zhen [2 ]
Liu, Changxiang [1 ]
Luo, Ying [1 ]
She, Canming [1 ]
机构
[1] Municipal and Environmental Engineering Institute, Shenyang Jianzhu University, Liaoning,110168, China
[2] Architectural Engineering Institute, Shenyang University, Liaoning,110044, China
来源
关键词
Passive solar - Atmospheric temperature - Phase change materials - Solar heating - Energy storage - Surface properties - Heating equipment - Solar thermal energy;
D O I
暂无
中图分类号
学科分类号
摘要
The Kang heating system has solar heating system combined capillary network and phase change energy storage. Through the experiment, results showed that the average temperatures of the head, medium and tail of traditional Kang are 65.70 ℃, 43.28 ℃ and 39.82 ℃, respectively, the difference of temperature is greater than 20 ℃ in the ordinary Kang. While the corresponding temperature in the new heating system room is 40.96 ℃, 39.06 ℃ and 37.52 ℃, the maximal difference of temperature is 3 ℃ only. The surface temperature of Kang that is covered by the phase-change materials decreases slowly during the night, and the surface temperature of phase-change material Kang is higher than ordinary Kang during 00:00-07:00. Indoor average temperature of the new mode room is 14.31 ℃ higher than ordinary Kang room during daytime and 7.21 ℃ higher than ordinary Kang room during night. It is greatly improved the thermal comfort of rural room. © 2015, Science Press. All right reserved.
引用
收藏
页码:2632 / 2637
相关论文
共 50 条
  • [11] Numerical study of thermal performance of phase change material energy storage floor in solar water heating system
    Zeng, Ruo-Lang
    Wang, Xin
    Zhang, Yin-Ping
    Di, Hong-Fa
    Zhang, Qun-Li
    [J]. Hunan Daxue Xuebao/Journal of Hunan University Natural Sciences, 2009, 36 (SUPPL.): : 141 - 145
  • [13] Experimental study on novel phase change composites for thermal energy storage
    Madhu Agarwal
    Brijesh Kuldeep
    Annie P. John
    Karishma Maheshwari
    Rajeev Dohare
    [J]. Journal of Thermal Analysis and Calorimetry, 2022, 147 : 7243 - 7252
  • [14] Experimental study of a phase change thermal energy storage with copper foam
    Martinelli, Matthieu
    Bentivoglio, Fabrice
    Caron-Soupart, Adele
    Couturier, Raphael
    Fourmigue, Jean-Francois
    Marty, Philippe
    [J]. APPLIED THERMAL ENGINEERING, 2016, 101 : 247 - 261
  • [15] Experimental study on novel phase change composites for thermal energy storage
    Agarwal, Madhu
    Kuldeep, Brijesh
    John, Annie P.
    Maheshwari, Karishma
    Dohare, Rajeev
    [J]. JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2022, 147 (13) : 7243 - 7252
  • [16] SOLAR THERMAL ENERGY STORAGE WITH PHASE CHANGE MATERIAL FOR DOMESTIC ACTIVE SPACE HEATING APPLICATIONS
    Shukla, Pushpendra Kumar
    Kishan, P. Anil
    [J]. PROCEEDINGS OF CONV-22: INT SYMP ON CONVECTIVE HEAT AND MASS TRANSFER, 2022, 2022,
  • [17] Study on Heat Charge and Discharge Performance of Phase Change Thermal Storage in Solar Energy - Fresh Air Heating System
    Luo, Hailiang
    Chen, Chao
    Li, Zhiyong
    Xue, Yaning
    Zhang, Ye
    [J]. 6TH INTERNATIONAL SYMPOSIUM ON HEATING, VENTILATING AND AIR CONDITIONING, VOLS I-III, PROCEEDINGS, 2009, : 1903 - 1910
  • [18] Phase Change Material For Solar Thermal Energy Storage In Buildings: Numerical Study
    Bouhssine, Zineb
    Najam, Mostafa
    El Alami, Mustapha
    [J]. JOURNAL OF SOLAR ENERGY ENGINEERING-TRANSACTIONS OF THE ASME, 2016, 138 (06):
  • [19] Experimental analysis of thermal energy storage by phase change material system for cooling and heating applications
    Patel, Jaykumar H.
    Qureshi, M. N.
    Darji, P. H.
    [J]. MATERIALS TODAY-PROCEEDINGS, 2018, 5 (01) : 1490 - 1500
  • [20] Experimental investigation on phase change material based thermal storage system for solar air heating applications
    Esakkimuthu, S.
    Hassabou, Abdel Hakim
    Palaniappan, C.
    Spinnler, Markus
    Blumenberg, Jurgen
    Velraj, R.
    [J]. SOLAR ENERGY, 2013, 88 : 144 - 153