Effect of windows on temperature moderation by a phase-change material (PCM) in a structure in winter

被引:15
作者
Dubovsky, V. [1 ]
Ziskind, G. [1 ]
Letan, R. [1 ]
机构
[1] Ben Gurion Univ Negev, Dept Mech Engn, Heat Transfer Lab, IL-84105 Beer Sheva, Israel
关键词
Simulations; Winter heating; Wax solidification-melting; Thermal comfort; ENERGY-STORAGE; NATURAL-CONVECTION; THERMAL STORAGE; BUILDINGS; VENTILATION; SIMULATION;
D O I
10.1016/j.enconman.2014.04.007
中图分类号
O414.1 [热力学];
学科分类号
摘要
The current numerical study focuses on the feasibility of furnishing thermal comfort in a structure with windows, at a mid-storey in a multi-storey building in winter. The performance of phase-change paraffin wax (PCM), as a heat source in winter, is investigated. The wax melts at 27 degrees C. It is stored under the floor tile as a 20 mm thick layer. At night the wax is heated up to its complete melting, using off-peak electricity. At day-time the latent heat is released into the space above the floor and the wax solidifies. The simulations are performed relating to temperature variations outside and inside, coupled with heat conduction and accumulation in walls, radiation between the surfaces, natural convection of air inside, and solidification or melting of the wax for 24 h and several days. The process is analyzed with and without fins and at two power inputs in the structure with windows, and compared to the windowless structure. The electrical power required to preserve thermal comfort in the structure with windows is 20% higher. All the simulations were conducted 3-dimensionally for structures in a subtropical climate. (c) 2014 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1324 / 1331
页数:8
相关论文
共 50 条
  • [1] Temperature moderation in a multistorey building by melting of a phase-change material
    Dubovsky, Vadim
    Ziskind, Gennady
    Letan, Ruth
    ARCHIVES OF THERMODYNAMICS, 2013, 34 (01) : 85 - 101
  • [2] A numerical study on the effect of phase-change material (PCM) parameters on the thermal performance of lightweight building walls
    Liu, Zu'an
    Hou, Jiawen
    Meng, Xi
    Dewancker, Bart Julien
    CASE STUDIES IN CONSTRUCTION MATERIALS, 2021, 15
  • [3] Phase-change materials (PCM) for automotive applications: A review
    Jaguemont, Joris
    Omar, Noshin
    Van den Bossche, Peter
    Mierlo, Joeri
    APPLIED THERMAL ENGINEERING, 2018, 132 : 308 - 320
  • [4] Thermal behavior analysis of hollow bricks filled with phase-change material (PCM)
    Gao, Yanna
    He, Fan
    Meng, Xi
    Wang, Ziyun
    Zhang, Ming
    Yu, Hanting
    Gao, Weijun
    JOURNAL OF BUILDING ENGINEERING, 2020, 31
  • [5] Effect of temperature and CuO-nanoparticle concentration on the thermal conductivity and viscosity of an organic phase-change material
    Aguila, Bastian, V
    Vasco, Diego A.
    Galvez, Paula P.
    Zapata, Paula A.
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2018, 120 : 1009 - 1019
  • [6] Influence of wall thermal performance on the contribution efficiency of the Phase-Change Material (PCM) layer
    Wu, Qian
    Wang, Jiahui
    Meng, Xi
    CASE STUDIES IN THERMAL ENGINEERING, 2021, 28
  • [7] Potential Applications of Phase-change Materials (PCM) in Building Energy Efficiency
    Li, Yancang
    Sang, Guanglei
    Shi, Huawang
    JOURNAL OF NEW MATERIALS FOR ELECTROCHEMICAL SYSTEMS, 2014, 17 (02) : 123 - 127
  • [8] Study of the thermal behavior of the composite phase change material (PCM) room in summer and winter
    Meng, Erlin
    Yu, Hang
    Zhou, Bo
    APPLIED THERMAL ENGINEERING, 2017, 126 : 212 - 225
  • [9] Effect of nanomaterials on the melting/freezing characteristics of phase-change material
    Paulsamy, Sivasamy
    Pandian, Pitchipoo
    Balasubramani, Jegan
    Kaliswaran, Karthik
    Dharmaraj, Mahadevi
    Natarajan, Gnanakumar
    Nanomaterials and Energy, 2024, 13 (03) : 84 - 91
  • [10] Impregnation of Activated Carbon with Organic Phase-Change Material
    Bae, Jiyeol
    Kim, Suho
    Kim, Kwangsoo
    Baek, Soyoung
    MATERIALS, 2024, 17 (01)