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Phase Change Materials and Thermal Performance of Buildings in Cyprus

机译:塞浦路斯建筑物的相变材料和热性能

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摘要

This work investigates the thermal performance of buildings in Cyprus and application of a particular passive technology; Phase Change Materials (PCMs) for the ultimate aim of reducing indoor air temperatures and energy supplied for the cooling season.PCMs for passive building applications are emerging technology and have not been tested for the buildings of Cyprus neither by computer simulations nor by practical applications. In this work, particular PCM end product; wallboard, having phase change temperature of 26 oC is employed together with various construction materials and simulated for buildings of Cyprus. Description of the current state in Cyprus has been carried out in terms of low energy building studies, widely used building fabric and building statistics. There is a huge gap in Cyprus in the field of energy performance and thermal comfort of buildings, which creates big room for research. Climatic design of buildings has been abandoned resulting in poor thermal comfort and increased energy consumption. There is still no regulation in place regarding the thermal performance of buildings in North Cyprus.Recent weather data of different Cyprus locations has been investigated and compared with the simulation weather data files that are employed in this work. The author has demonstrated that Finkelstein-Schafer statistics between recent weather data of Cyprus and simulation weather data files are close enough to obtain accurate results.Dynamic thermal simulations has been carried out by using Energy Plus, which is a strong and validated thermal simulation program that can model PCMs. Simulations are done for two different building geometry; "simple building" and "typical building" by employing different construction materials. Simple building is a small size box shaped building and typical building is a real existing building and selected by investigation of the building statistics.Simulation results showed that with this particular PCM product, indoor air temperatures and cooling energies supplied to simple building is reduced up to 1.2 oC and 18.64 % when heavier construction materials are used and up to 1.6 oC and 44.12 % when lighter construction materials are used. These values for typical building are found to be 0.7 oC, 3.24 % when heavier construction materials are used and 1.2 oC, 3.64 % when lighter construction materials are used. It is also found that, if thinner walls and slabs are used in the buildings the effectiveness of the PCM lining increases in significant amount.
机译:这项工作调查了塞浦路斯建筑的热性能和特定被动技术的应用;相变材料(PCM)的最终目的是降低室内空气温度和降温季节的能源供应。用于被动式建筑的PCM是新兴技术,未经塞浦路斯的计算机模拟和实际应用测试。在这项工作中,特定的PCM终端产品;相变温度为26 oC的墙板与各种建筑材料一起使用,并模拟了塞浦路斯的建筑。根据低能耗建筑研究,广泛使用的建筑结构和建筑统计数据对塞浦路斯目前的状态进行了描述。塞浦路斯在建筑物的能源性能和热舒适性方面存在巨大差距,这为研究创造了很大空间。建筑物的气候设计已被放弃,从而导致较差的热舒适性并增加了能耗。关于北塞浦路斯建筑物的热性能仍然没有法规。已调查塞浦路斯不同地点的最新天气数据,并将其与本工作中使用的模拟天气数据文件进行了比较。作者证明塞浦路斯的近期天气数据与模拟天气数据文件之间的Finkelstein-Schafer统计数据足够接近以获得准确的结果。使用Energy Plus进行了动态热模拟,这是一个功能强大且经过验证的热模拟程序。可以对PCM建模。针对两种不同的建筑几何图形进行了仿真。通过使用不同的建筑材料来实现“简单建筑”和“典型建筑”。简单建筑物是小尺寸的箱形建筑物,典型建筑物是真实存在的建筑物,通过对建筑物统计数据的研究进行选择。仿真结果表明,使用这种特定的PCM产品,可将提供给简单建筑物的室内空气温度和冷却能量降低至使用较重的建筑材料时为1.2 oC和18.64%,使用较轻的建筑材料时为1.6 oC和44.12%。发现典型建筑的这些值为0.7 oC,使用较重的建筑材料时为3.24%,而使用较轻的建筑材料为1.2 oC,3.64%。还发现,如果在建筑物中使用较薄的墙壁和楼板,则PCM衬里的有效性将显着增加。

著录项

  • 作者

    Ozdenefe, Murat.;

  • 作者单位

    The University of Manchester (United Kingdom).;

  • 授予单位 The University of Manchester (United Kingdom).;
  • 学科 Mechanical engineering.;Civil engineering.;Aerospace engineering.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 239 p.
  • 总页数 239
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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