Thermal storage characteristics of microencapsulated phase change material coatings in low-energy rural prefabricated building walls

被引:0
|
作者
Tong, Xiao-Xiao [1 ,3 ]
Ge, Yucong [2 ]
机构
[1] China Univ Min & Technol, Sch Architecture & Design, Xuzhou, Peoples R China
[2] China Univ Min & Technol, Sch Low carbon Energy & Power Engn, Xuzhou, Peoples R China
[3] China Univ Min & Technol, Sch Architecture & Design, Xuzhou 221116, Peoples R China
关键词
Microencapsulated phase change material; rural prefabricated building; thermal storage characteristics; energy saving and carbon reduction; numerical simulation;
D O I
10.1080/13467581.2023.2278465
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Prefabricated buildings in rural areas of China waste a large amount of energy due to poor thermal insulation. Phase change materials (PCMs) are able to stabilize room temperature by latent heat absorption and release during the phase change process. This study incorporated PCMs in the form of microcapsules into the interior wall coatings of prefabricated buildings, and by taking advantage of PCMs' energy storage capacity, the thermal storage characteristics of PCM-coated bricks were investigated. The results show that microencapsulated phase change material(MPCM) coatings for prefabricated walls exhibit excellent thermal stability properties and effectively reduce the heat flux of prefabricated walls, with coatings having a MPCM mass fraction of 15% and a thickness of 5 mm providing the highest overall benefits. By fitting the numerical simulation results with experimental data, a novel multifunctional passive solar phase change heat collection and storage wall system was developed. This study innovatively combines energy storage materials with interior wall coatings in prefabricated walls of modular buildings investigating how it enhances the thermal stability of the external insulation walls and effectively reduces the reliance on heating equipment for auxiliary heating in rural residences. This essay aims to provide feasible recommendations for optimizing the dual-stage energy-saving and carbon reduction goals in both the construction and operation of rural areas.
引用
收藏
页码:1874 / 1887
页数:14
相关论文
共 50 条
  • [31] A novel bifunctional microencapsulated phase change material loaded with ZnO for thermal energy storage and light-thermal energy conversion
    Huang, Chaowei
    Li, Qiuting
    Yang, Yubin
    Wei, Sheng
    Ji, Rong
    Zhang, Qingfeng
    Zhu, Yucao
    Zhang, Huanzhi
    Xu, Fen
    Sun, Lixian
    Xia, Yongpeng
    SUSTAINABLE ENERGY & FUELS, 2020, 4 (10) : 5203 - 5214
  • [32] Experimental and numerical study on transient thermal energy storage of microencapsulated phase change material particles in an enclosure
    Ho, C. J.
    Chen, Chia-Cheng
    Yan, Wei-Mon
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2016, 94 : 191 - 198
  • [33] Supercooling suppression of metal-based microencapsulated phase change material (MEPCM) for thermal energy storage
    Lei, Ke
    Bao, Jiaming
    Zhao, Xiangyu
    Wang, Hao
    Zou, Deqiu
    CHEMICAL ENGINEERING JOURNAL, 2022, 446
  • [34] Simultaneous charging and discharging performance for a latent thermal energy storage system with a microencapsulated phase change material
    Fang, Y.
    Qu, Z. G.
    Zhang, J. F.
    Xu, H. T.
    Qi, G. L.
    APPLIED ENERGY, 2020, 275
  • [35] Preparation and characterization of sodium thiosulfate pentahydrate/silica microencapsulated phase change material for thermal energy storage
    Liu, Chenzhen
    Wang, Cui
    Li, Yimin
    Rao, Zhonghao
    RSC ADVANCES, 2017, 7 (12): : 7238 - 7249
  • [36] Microencapsulated phase change material via Pickering emulsion stabilized by cellulose nanofibrils for thermal energy storage
    Kaya, Gulbahar Bahsi
    Kim, Yunsang
    Callahan, Kyle
    Kundu, Santanu
    CARBOHYDRATE POLYMERS, 2022, 276
  • [37] Microencapsulated oleic-capric acid/hexadecane mixture as phase change material for thermal energy storage
    Mert, Mehmet Selcuk
    Mert, Hatice Hande
    Sert, Merve
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2019, 136 (04) : 1551 - 1561
  • [38] Optimization strategies of microencapsulated phase change materials for thermal energy storage
    Wang, K. W.
    Yan, Ting
    Pan, W. G.
    JOURNAL OF ENERGY STORAGE, 2023, 68
  • [39] Preparation of microencapsulated phase change materials (MEPCM) for thermal energy storage
    Su, Weiguang
    Darkwa, Jo
    Kokogiannakis, Georgis
    Zhou, Tongyu
    Li, Yiling
    IMPROVING RESIDENTIAL ENERGY EFFICIENCY INTERNATIONAL CONFERENCE, IREE 2017, 2017, 121 : 95 - 101
  • [40] Microencapsulated phase change materials as slurries for thermal energy storage: A review
    Pathak, Lagan
    Trivedi, G. V. N.
    Parameshwaran, R.
    Deshmukh, S. Sandip
    MATERIALS TODAY-PROCEEDINGS, 2021, 44 : 1960 - 1963