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Effects of envelope color and heat insulation on building thermal performance

机译:围护结构颜色和隔热性能对建筑热性能的影响

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摘要

Buildings are large consumers of energy in all countries. In regions with extreme climatic conditions, a substantial share of energy goes to heat or cool the buildings. This heating and air-conditioning load can be reduced through many means; notable among them is the proper design and selection of building envelope and its component. This study evaluates the impacts of envelope color and heat insulation on building thermal performance. Two sets of experiment were conducted in the month of June 2011. In the first experiment, different coating colors was studied, i.e. white, yellow, and brown for types of concrete wall. While, orange, green, and dark brown were applied for roofing tiles in a small-scale prototype. The ambient temperature, surface temperature, solar radiation, wind speed and relative humidity were measured for seven sunny days starting 9.00 am to 7.00 pm. The coating colors that exhibit the lowest surface temperature and heat flux were applied on the three small-scale building models to examine the minimum heat transfer rate into the building. In the second set of experiment, three simulated models were fabricated; no insulation (referral study) and the other two were applied at different location of roof and wall structure, respectively. The heat transfer was computed in order to determine the effectiveness of EPS Geofoam as heat insulator. The total heat reduction between wall insulated and roof insulated models were also compared in order to determine the best placement of thermal insulation in building component. The results showed that white concrete wall exhibits the lowest surface temperature and heat flux at peak hour which recorded at 35.4 °C and 105 W/m2, respectively. On the other hand, the orange roof tile depicts the lowest surface temperature and heat flux at peak hour at 37.4 °C and 3461 W/m2, respectively. In addition, the application of EPS Geofoam demonstrated a remarkable result in reducing the heat transfer into the building. It reduced the internal wall and roof surface temperature by up to 3.0°C and 2.8°C respectively. EPS Geofoam showed the best performance when placed in the roof structure where the total heat flux was reduced by up to 76 percent compared to the control (referral) condition.
机译:在所有国家中,建筑物都是能源的主要消耗者。在气候条件极端的地区,很大一部分能量用于加热或冷却建筑物。采暖和空调负荷可以通过多种方式降低。其中值得注意的是建筑物围护结构及其组件的正确设计和选择。这项研究评估了围护结构颜色和隔热性能对建筑物热性能的影响。在2011年6月进行了两组实验。在第一个实验中,研究了不同的涂料颜色,即混凝土墙类型的白色,黄色和棕色。同时,在一个小规模的原型中,将橙色,绿色和深棕色应用于屋顶瓦片。从上午9:00到下午7:00,测量了七个晴天的环境温度,表面温度,太阳辐射,风速和相对湿度。在三个小型建筑模型上施加具有最低表面温度和热通量的涂料颜色,以检查进入建筑物的最小热传递率。在第二组实验中,制作了三个模拟模型;没有隔热层(推荐研究),另外两个分别应用于屋顶和墙壁结构的不同位置。为了确定EPS土工泡沫作为隔热材料的有效性,计算了热传递。还比较了墙体隔热模型和屋顶隔热模型之间的总热量减少,以确定隔热在建筑物组件中的最佳位置。结果表明,白色混凝土墙在峰值时间表现出最低的表面温度和热通量,分别为35.4°C和105 W / m2。另一方面,橙色屋面瓦分别在37.4°C和3461 W / m2的高峰时间表现出最低的表面温度和热通量。此外,EPS Geofoam的应用在减少热传递到建筑物方面显示出显着的效果。它将内壁和屋顶表面温度分别降低了3.0°C和2.8°C。当放置在屋顶结构中时,EPS泡沫塑料表现出最佳的性能,与对照(参考)条件相比,该结构的总热通量减少了多达76%。

著录项

  • 作者

    Abdullah Ikmalzatul;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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