...
首页> 外文期刊>Energy and power engineering >Optimum Distribution of Two Different Phase Change Materials between Various Components of Roof Air-Conditioned Room, Suitable to Reduce Annual Energy Consumption
【24h】

Optimum Distribution of Two Different Phase Change Materials between Various Components of Roof Air-Conditioned Room, Suitable to Reduce Annual Energy Consumption

机译:两种不同相变材料在屋顶空调房间各个组件之间的最佳分配,适合降低年度能耗

获取原文
           

摘要

Obviously, the outside annual climate change caused either by a major solar input during the hottest period or by a temperature drop during the coldest period leads to discomfort in inside buildings. This effect can be reduced by storing heat transmitted in phase change materials (PCM) as latent heat, in order to ensure a good situation of thermal comfort during all months of the year. In this work, thermal behavior of two roofing systems is studied. One roof is constituted only by usual materials in building. In the other, two phase change materials (PCM) are introduced according to three configurations. Study is interested to assess incorporation effect of two PCMs within the roof and to evaluate the optimum locations to reduce the energy consumption of air-conditioned room. Mono-dimensional numerical model validated analytically and experimentally, is used to carry out a parametric analyzes to determine characteristics of the layers in which the roofs are formed regardless of external climate effect. Numerical calculations are performed for three configurations of roof. Results show that insertion of phase change materials in roof provides best energy consumption saving regardless annual climate change. Generally, the three configurations lead to different results, depending on the combination of PCMs. This difference becomes less important when selection of PCMs take account the thermal comfort level and temperatures of hottest and coldest periods.
机译:显然,由最热时期的大量太阳能输入或最冷时期的温度下降引起的外部年度气候变化会导致建筑物内部的不适。通过将在相变材料(PCM)中传输的热量作为潜热存储,可以减少这种影响,以确保一年四季都保持良好的热舒适状态。在这项工作中,研究了两个屋面系统的热性能。一个屋顶仅由建筑物中的普通材料构成。另一方面,根据三种配置引入了两种相变材料(PCM)。研究有兴趣评估屋顶内两个PCM的结合效果,并评估最佳位置以减少空调房间的能耗。通过分析和实验验证的一维数值模型用于进行参数分析,以确定与外部气候影响无关的形成屋顶的层的特征。对屋顶的三种配置进行了数值计算。结果表明,无论年度气候如何变化,在屋顶中插入相变材料都能最大程度地节省能耗。通常,这三种配置会导致不同的结果,具体取决于PCM的组合。当相变材料的选择考虑到热舒适等级和最高气温,冰时期的这种差异变得不那么重要。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号