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On the importance of the location of PCMs in building walls for enhanced thermal performance

机译:关于PCM在建筑物墙壁中的位置对于增强热性能的重要性

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摘要

Phase change materials (PCMs) are used to enhance the thermal storage capacity of building walls. PCM incorporation into building walls poses several design challenges; a critical one being the integration method (e.g., micro- vs. macro-encapsulation) as well as the location of PCMs within the volume of the walls. Such location is critical for wall performance in terms of controlling heat transfer rates for purposes of energy conservation and peak load shifting. This paper highlights the dependence of wall thermal performance on PCM location leading to the most optimal PCM location for the system under study. In this study, PCMs were incorporated in walls via "thermal shields" where the PCM material was encapsulated in polyethylene flat bubbles "sandwiched" between two layers of protective aluminum foil. This system is herein referred to as "PCM thermal shield (PCMTS)". The thermal performance of the walls with and without PCMTS was evaluated experimentally using a dynamic wall simulator. PCM thermal shields (PCMTSs) were placed within the wall insulation at varying distances from the internal surface of the bounding wallboard, which happened to be the bounding layer furthest from the heating sources of the simulator. For the system under study, the results showed that the optimal location for a PCMTS was at a distance of 1/5L from the internal surface of the bounding wallboard, where I was the thickness of the insulation cavity. At this location, the average peak heat flux reduction and load shifting time were approximately 41% and 2 h, respectively, when compared to the peak heat fluxes across walls without PCMTS.
机译:相变材料(PCM)用于增强建筑物墙壁的蓄热能力。 PCM结合到建筑物墙壁中会带来一些设计挑战。关键是集成方法(例如微封装与宏封装)以及PCM在墙体中的位置。就控制节能和峰值负荷转移的传热速率而言,这种位置对于墙体性能至关重要。本文重点介绍了壁热性能对PCM位置的依赖性,从而导致了所研究系统的最佳PCM位置。在这项研究中,PCM通过“隔热板”结合到墙中,其中PCM材料被封装在“夹在”两层保护铝箔之间的聚乙烯扁平气泡中。该系统在本文中称为“ PCM隔热板(PCMTS)”。使用动态墙模拟器对带有和不带有PCMTS的墙的热性能进行了实验评估。 PCM隔热板(PCMTS)放置在墙体保温层中,距边界墙板的内表面的距离不同,而该边界墙恰好是距模拟器加热源最远的边界层。对于所研究的系统,结果表明,PCMTS的最佳位置是与边界墙板的内表面相距1 / 5L,其中I是绝缘腔的厚度。与没有PCMTS的情况相比,在此位置的平均峰值热通量减少和负载转移时间分别约为41%和2 h。

著录项

  • 来源
    《Applied Energy》 |2013年第6期|72-78|共7页
  • 作者单位

    School of Architecture, Southeast University, No. 2, Sipailou, Nanjing 210096, PR China;

    Civil, Environmental & Architectural Engineering Department, The University of Kansas, Lawrence, KS 66045, USA;

    School of Energy and Environment, Southeast University, No. 2, Sipailou, Nanjing 210096, PR China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    phase change materials; wall heat transfer; building energy; thermal energy storage;

    机译:相变材料;壁传热建筑能源;热能储存;

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