Enhanced performance of laminated PCM wallboard for thermal energy storage in buildings

被引:0
|
作者
Kim, JS [1 ]
机构
[1] Nottingham Trent Univ, Appl Energy & Environm Engn Grp, Nottingham NG1 4BU, England
关键词
D O I
暂无
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
Research interest into the application of phase change materials (PCMs) as energy storage materials in buildings has gathered momentum over recent years. PCMs utilising latent heat produced during phase change transformation processes do attain higher energy density with small temperature difference than other storage media using sensible heat. One potential concept being pursued for minimising cooling and heating loads is the integrated PCM wallboard system. This system is based on randomly mixing PCMs into wallboards. However trial samples have so far failed to overcome the heat and mass transfer barriers associated with the thermal behaviour of PCMs. This study evaluates the concept of laminated-PCMs as integral part of wallboard system in building fabric. This novel approach of integrating PCMs promotes rapid transfer of latent heat, sharp response to indoor temperature, and minimises multidimensional mode of heat transfer. It also facilitates production and recycling methods of wallboards. The investigation into the thermal performance of the laminated wallboard system was done numerically. In order to address the moving boundary phenomenon the finite difference method incorporating implicit enthalpy method was used. Through series of heat transfer simulations and under different sets of properties and conditions, the surface temperature variations were obtained. The temperature variations were then used to calculate the heat flux and the total amount of heat transferred in and out of the wallboard. For the purpose of comparison, simulations were also carried out for randomly mixed PCMs during heat storage and discharge processes. The results showed a great advantage of the laminated PCM-wallboard system over the randomly mixed PCM type in terms of enhanced thermal performance, rapid heat transfer rates under narrow temperature swing. For instance maximum instantaneous enhancement in heat flux was about 20-50% higher during the phase change process and up to about 18% more heat storage and release capacity. Practical development is however urged towards validation and production assessment.
引用
收藏
页码:647 / 651
页数:5
相关论文
共 50 条
  • [21] ENHANCED THERMAL PROPERTIES OF PCM BASED NANOFLUID FOR SOLAR THERMAL ENERGY STORAGE
    Shin, Donghyun
    Banerjee, Debjyoti
    ES2010: PROCEEDINGS OF ASME 4TH INTERNATIONAL CONFERENCE ON ENERGY SUSTAINABILITY, VOL 1, 2010, : 841 - 845
  • [22] Maximization of performance of a PCM - based thermal energy storage systems
    Kuta, Marta
    Matuszewska, Dominika
    Wojcik, Tadeusz M.
    EXPERIMENTAL FLUID MECHANICS 2018 (EFM18), 2019, 213
  • [23] Thermal energy storage and release of a new component with PCM for integration in floors for thermal management of buildings
    Royon, Laurent
    Karim, Laurie
    Bontemps, Andre
    ENERGY AND BUILDINGS, 2013, 63 : 29 - 35
  • [24] Preparation and investigation of nano-enhanced PCM for thermal energy storage
    Sharma, R. K.
    Ganesan, P.
    2017 1ST INTERNATIONAL CONFERENCE ON ELECTRONICS, MATERIALS ENGINEERING & NANO-TECHNOLOGY (IEMENTECH), 2017,
  • [25] Enhanced thermophysical properties of organic PCM through shape stabilization for thermal energy storage in buildings: A state of the art review
    Rathore, Pushpendra Kumar Singh
    Shukla, Shailendra Kumar
    ENERGY AND BUILDINGS, 2021, 236
  • [26] Analysis of the thermal performance of thermal energy storage systems using PCM capsules
    Kang, Yanbing
    Zhang, Yinping
    Jiang, Yi
    Zhu, Yingxin
    Qinghua Daxue Xuebao/Journal of Tsinghua University, 2000, 40 (02): : 106 - 109
  • [27] Thermal performance of a PCM thermal storage unit
    Liu, Ming
    Bruno, Frank
    Saman, Wasim
    PROCEEDINGS OF ISES SOLAR WORLD CONGRESS 2007: SOLAR ENERGY AND HUMAN SETTLEMENT, VOLS I-V, 2007, : 2766 - 2771
  • [28] Thermal characterization of gypsum boards with PCM included: Thermal energy storage in buildings through latent heat
    Oliver, Alicia
    ENERGY AND BUILDINGS, 2012, 48 : 1 - 7
  • [29] Thermal energy storage performance of biaxial voided RCC roof slab integrated with macroencapsulated PCM for passive cooling of buildings
    Abass, Peerzada Jaffar
    Muthulingam, S.
    JOURNAL OF ENERGY STORAGE, 2024, 88
  • [30] Thermal performance of a pcm storage unit
    Depto de Engenharia Termica e de, Fluidos-FEM-UNICAMP, Brazil
    Energy Convers Manage, 2 (115-138):