Outline of the incorporation of phase change materials in radiant systems

被引:13
|
作者
Moreira, M. [1 ]
Dias-de-Oliveira, J. [1 ]
Amaral, C. [1 ]
Neto, F. [1 ]
Silva, T. [1 ]
机构
[1] Univ Aveiro, TEMA Ctr Mech Technol & Automat, Dept Mech Engn, P-3810193 Aveiro, Portugal
关键词
PCM; Numerical simulation; Radiant system layouts; Radiant floor; Macroencapsulation; Microencapsulation; THERMAL-ENERGY STORAGE; FLOOR HEATING-SYSTEM; SHAPE-STABILIZED PCM; PERFORMANCE; OPTIMIZATION; SIMULATION; MANAGEMENT; MODEL;
D O I
10.1016/j.est.2022.106307
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 article presents an outline about the incorporation of phase change materials (PCM) in radiant systems, their incorporation techniques, challenges, advantages, and disadvantages. The PCM incorporation into building so-lutions has been studied over the last 40 years to improve the energy efficiency and to solve the fast-growing problem of energy consumption in housing. The use and incorporation of PCM in building solutions contrib-utes to improve building energy performance, reducing the thermal amplitudes, the maximum and minimum peak temperatures, and reducing the overall energy consumption. This article aims at outlining of the current state of PCM usage in radiant systems, with a special focus on PCM macroencapsulated floors, to set the ground for future work in the area through studying and reviewing existing literature. Topics such as commercially available radiant systems, PCM encapsulation techniques, innovative studies of PCM radiant systems and nu-merical modelling techniques are covered, providing an in-depth overview of the totality of the PCM radiant floor subject. Some of the main conclusions of this article are that although there is plenty of information available, but some relevant topics are underdeveloped, or missing in some research papers, such as climatic conditions of the experimental studies, macroencapsulation techniques, and the lack of a standard for objectively comparing PCM solutions in the building's envelope. There are plenty of valid and accurate numerical models to model PCM, where the most used methods are the enthalpy method and the effective heat capacity.
引用
收藏
页数:16
相关论文
共 50 条
  • [31] Thermal storage effect of radiant floor cooling system using phase change materials in the hot and humid climate of Indonesia
    Kitagawa, Haruka
    Asawa, Takashi
    Kubota, Tetsu
    Trihamdani, Andhang Rakhmat
    Mori, Hiroshi
    BUILDING AND ENVIRONMENT, 2022, 207
  • [32] Phase change materials in thermally activated building systems: A comprehensive review
    Abdel-Mawla, Mona A.
    Hassan, Muhammed A.
    Khalil, Adel
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2022, 46 (09) : 11676 - 11717
  • [33] Phase change materials in space systems. Fundamental applications, materials and special requirements - A review
    Diaconu, Bogdan Marian
    Cruceru, Mihai
    Anghelescu, Lucica
    ACTA ASTRONAUTICA, 2024, 216 : 163 - 213
  • [34] Compression effect of metal foam on melting phase change in a shell-and-tube unit
    Guo, Junfei
    Du, Zhao
    Liu, Gang
    Yang, Xiaohu
    Li, Ming-Jia
    APPLIED THERMAL ENGINEERING, 2022, 206
  • [35] Phase change temperature adjustment of CH3COONa.3H2O to fabricate composite phase change material for radiant floor heating
    Fu, Wanwan
    Zhou, Wei
    Lv, Geyun
    Zhang, Rongtang
    Peng, Hao
    Fang, Tao
    Liu, Jiesheng
    Chen, Weicheng
    Fang, Yutang
    CASE STUDIES IN THERMAL ENGINEERING, 2023, 42
  • [36] Mortars with incorporation of Phase Change Materials (PCM): Physical and mechanical properties and durability
    Cunha, Sandra
    Aguiar, Jose
    Ferreira, Victor
    Tadeu, Antonio
    MATERIA-RIO DE JANEIRO, 2015, 20 (01): : 245 - 261
  • [37] Organic phase change materials and their textile applications: An overview
    Sarier, Nihal
    Onder, Emel
    THERMOCHIMICA ACTA, 2012, 540 : 7 - 60
  • [38] A review on phase change materials integrated in building walls
    Kuznik, Frederic
    David, Damien
    Johannes, Kevyn
    Roux, Jean-Jacques
    RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2011, 15 (01) : 379 - 391
  • [39] Nano-Enhanced Phase Change Materials for Thermal Energy Storage: A Bibliometric Analysis
    Mohammadpour, Javad
    Lee, Ann
    Timchenko, Victoria
    Taylor, Robert
    ENERGIES, 2022, 15 (09)
  • [40] Improving the performance of air conditioning systems by using phase change materials: A review
    Omara, Adil A. M.
    Abuelnour, Abuelnour A. A.
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2019, 43 (10) : 5175 - 5198