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The effectiveness of phase change materials in relation to summer thermal comfort in air-conditioned office buildings

机译:相变材料在空调办公大楼中与夏季热舒适性有关的有效性

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摘要

The incorporation of Phase Change Materials (PCMs) into the opaque envelope of lightweight buildings is a good solution to compensate for the small thermal inertia, which usually entails pronounced overheating and high space cooling load in summer. However, the position and the thickness of the PCMs, as well as their thermal properties, must be attentively selected in order to ensure their effective operation. This paper shows a comprehensive investigation about the effectiveness of a commercial PCM, available in the form of mats, when instaled within drywal partition systems in air-conditioned lightweight office buildings. The study is based on dynamic simulations carried out with EnergyPlus on a typical office building, with the aim to calculate the indoor operative temperature and the cooling load under thermostatic control. The performance for the base case (without PCM) is then compared with the case where PCM mats with various thickness and melting temperature are applied. The analysis is repeated in three different locations, ranging from Southern Europe (Rome, Italy), Continental Europe (Wien, Austria) and Northern Europe (London, UK). The results of the simulations highlight that in lightweight air-conditioned office buildings PCMs contribute to attenuate the inside surface temperature peak by around 0.5 ℃, while also reducing the peak cooling load by 10% or even 15%, depending on the PCM thickness and on the outdoor climate. The conclusions may help designers to make the correct choices in terms of thickness of the PCMs, scheduled rate of nighttime ventilation and value of the peak melting temperature.
机译:将相变材料(PCM)掺入轻型建筑的不透明外壳中是一种很好的解决方案,可以补偿较小的热惯性,这种惯性通常在夏天引起明显的过热和高空间制冷负荷。但是,必须仔细选择PCM的位置和厚度以及它们的热性能,以确保其有效运行。本文展示了有关商用PCM有效性的全面调查,该PCM安装在空调轻型办公建筑的干墙隔板系统中时,以垫子形式提供。这项研究基于EnergyPlus在典型办公大楼上进行的动态模拟,目的是在恒温控制下计算室内工作温度和制冷负荷。然后将基本外壳(不带PCM)的性能与采用各种厚度和熔化温度的PCM垫的情况进行比较。在三个不同的位置重复了该分析,范围从南欧(意大利罗马),欧洲大陆(奥地利维恩)和北欧(英国伦敦)开始。仿真结果表明,在轻型空调办公楼中,PCM有助于将内表面温度峰值衰减约0.5℃,同时还将峰值冷却负荷降低10%甚至15%,具体取决于PCM的厚度和室外气候。结论可以帮助设计人员根据PCM的厚度,预定的夜间通风率和峰值熔化温度值做出正确的选择。

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  • 来源
    《建筑模拟(英文版)》 |2018年第6期|1145-1161|共17页
  • 作者单位

    School of the Built Environment, University of Reading, RG66AW, Reading, UK;

    Department of Electric, Electronic and Computer Engineering, University of Catania, Viale A. Doria 6, 95125, Catania, Italy;

    Department of Electric, Electronic and Computer Engineering, University of Catania, Viale A. Doria 6, 95125, Catania, Italy;

    Department of Electric, Electronic and Computer Engineering, University of Catania, Viale A. Doria 6, 95125, Catania, Italy;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
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