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Evaluation of Phase Change Materials for Cooling in a Super-Insulated Passive House.

机译:评估用于超绝热被动房中冷却的相变材料。

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摘要

Due to factors such as rising energy costs, diminishing resources, and climate change, the demand for high performance buildings is on the rise. As a result, several new building standards have emerged including the Passive House Standard, a rigorous energy-use standard based on a super-insulated and very tightly sealed building envelope. The standard requires that that air infiltration is less than or equal to 0.6 air changes per hour at a 50 Pascal pressure difference, annual heating energy is less than or equal to 15kWh/m2, and total annual source energy is less than or equal to 120 kWh/m2. A common complaint about passive houses is that they tend to overheat. Prior research using simulation suggests that the use of Phase Change Materials (PCMs), which store heat as they melt and release heat as the freeze, can reduce the number of overheated hours and improve thermal comfort.;In this study, an actual passive house duplex in Southeast Portland was thoroughly instrumented to monitor various air and surface temperatures. One unit contains 130kg of PCM while the other unit contains no PCM to serve as an experimental control. The performance of the PCM was evaluated through analysis of observed data and through additional simulation using an EnergyPlus model validated with observed data. The study found that installation of the PCM had a positive effect on thermal comfort, reducing the estimated overheated hours from about 400 to 200.
机译:由于能源成本上升,资源减少和气候变化等因素,对高性能建筑的需求正在上升。结果,出现了几项新的建筑标准,包括被动房标准,这是一种基于超级绝缘且非常密封的建筑围护结构的严格的能耗标准。该标准要求在50 Pascal压差下,每小时的空气渗透量小于或等于0.6换气,年热能小于或等于15kWh / m2,年总能源量小于或等于120千瓦时/平方米关于被动式房屋的一个普遍抱怨是,它们倾向于过热。先前使用模拟进行的研究表明,使用相变材料(PCM)可以在融化时存储热量并以冻结的形式释放热量,可以减少过热时间并提高热舒适性。东南波特兰的全双工设备经过全面检测,可以监测各种空气和地面温度。一个单元包含130kg的PCM,而另一单元不包含PCM作为实验控件。 PCM的性能是通过对观察到的数据进行分析并通过使用经观察到的数据验证的EnergyPlus模型进行的附加仿真来评估的。研究发现,PCM的安装对热舒适性有积极影响,将估计的过热时间从大约400减少到200。

著录项

  • 作者

    Lauck, Jeffrey Stephen.;

  • 作者单位

    Portland State University.;

  • 授予单位 Portland State University.;
  • 学科 Mechanical engineering.
  • 学位 M.S.
  • 年度 2013
  • 页码 70 p.
  • 总页数 70
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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