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On the placement of a phase change material thermal shield within the cavity of buildings walls for heat transfer rate reduction

机译:在建筑物墙壁的空腔内放置相变材料隔热板以降低传热速率

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摘要

PCMs (Phase change materials) are used to enhance the thermal storage capacity of building walls, decrease indoor air temperature fluctuations, and shift peak heat transfer rates to off-peak times. PCM location within building walls is recognized to be critical for the optimum performance of the system. One possible integration of the PCM into a wall could be via a PCM-layer or "shield," herein referred to as "PCMTS" (PCM Thermal Shield). A prototype PCMTS was developed and its thermal performance was evaluated in three different locations within the cavity of a typical North American residential wall system using a dynamic wall simulator in this paper. The experimental results showed that, compared to a wall without a PCMTS, the peak heat fluxes were reduced by as much as 11% when the thermal shield was placed in the inward-most location next to the internal face of the gypsum wallboard within the wall cavity. The PCM thermal shield produced only small effects on the peak heat fluxes when it was placed half way between the enclosing surfaces of the internal cavity of the wall and almost no effect when it was placed next to the internal face of the outermost layer of the wall.
机译:PCM(相变材料)用于增强建筑物墙壁的蓄热能力,减少室内空气温度波动以及将峰值传热速率转换为非高峰时间。 PCM在建筑物墙壁内的位置对于系统的最佳性能至关重要。 PCM到壁的一种可能的整合可以是通过PCM层或“屏蔽”,在本文中被称为“ PCMTS”(PCM热屏蔽)。本文开发了PCMTS原型,并使用动态墙模拟器在典型的北美住宅墙系统的空腔内的三个不同位置评估了其热性能。实验结果表明,与不使用PCMTS的墙相比,将隔热板放置在墙内石膏墙板内面附近的最靠内位置时,峰值热通量减少多达11%。腔。当将PCM热屏蔽罩放置在壁内部空腔的封闭表面之间的一半位置时,对峰值热通量仅产生很小的影响,而将其放置在壁最外层的内表面附近时几乎没有影响。 。

著录项

  • 来源
    《Energy》 |2014年第14期|780-786|共7页
  • 作者单位

    Key Laboratory of Urban and Architectural Heritage Conservation of Ministry of Education, School of Architecture, Southeast University, No. 2 Sipailou,Nanjing 210096, PR China;

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

    School of Energy and Environment, Southeast University, Nanjing 210096, PR China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Phase change material; 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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