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Determination of Heat Transfer Coefficient of Two Insulated Cotton Based on Wall Framing

机译:基于壁架的两种隔热棉传热系数的确定

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The heat preservation performance of the light wood frame construction wall directly affects the energy saving effect of the light wood frame construction. In order to strengthen the research of the thermal performance of the light wood structure wall and sandwich wall, in this paper, the heat transfer coefficient of glass-insulated cotton with two kinds of materials was measured in the exterior wall of the same light-weight wooden structure through field test method for heat transfer coefficient of construction so as to compare the test value and theory of the wall insulation coefficient Value, and preferably a thermal insulation cotton filling material. The conclusion shows that the wall filling material of guardian glass insulation performance is better than the Owens Corning Glass insulation cotton, and the former is adapted to the area of hot summer and cold winter and hot in summer and warm in winter, which is suitable for the hot summer and warm winter area. This paper is helpful to promote the energy saving optimization design of the wall structure of the light wood frame construction, and the engineering application value is high. Calculating the heat-conducting value of light wood structure wall, and the calculated values of the temperature of the constituent materials are comparable with the measured values actually, and the composite material theory can be used to predict the heat-conducting property of wood structure construction. The above is mentioned help to improve the level of on-site testing technology of heat-conducting, and provide a useful reference for the energy-saving insulation design work for light wood structure wall in our country, and this study has a high engineering application value.
机译:轻木结构墙体的保温性能直接影响轻木结构墙体的节能效果。为了加强对轻木结构墙和夹芯墙热性能的研究,本文在相同重量的外墙中测量了两种材料的玻璃隔热棉的传热系数。木结构建筑通过现场测试方法计算建筑的传热系数,从而比较测试值与理论墙体的绝热系数值,最好是一种隔热棉填充材料。结论表明,监护玻璃隔热材料的墙体填充性能优于欧文斯科宁玻璃隔热棉,前者适用于夏热冬冷,夏热冬暖的地区,适用于炎热的夏天和温暖的冬天。本文有助于促进轻木结构墙体结构的节能优化设计,具有较高的工程应用价值。计算轻木结构墙体的导热值,计算出的构成材料的温度值与实测值可比拟,复合材料理论可用于预测木结构建筑的导热性。以上内容有助于提高导热现场测试技术水平,为我国轻木结构墙体节能保温设计工作提供有益的参考,具有较高的工程应用价值。值。

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