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首页> 外文期刊>Case Studies in Thermal Engineering >Experimental measurement of hermetic edge seal's thermal conductivity for the thermal transmittance prediction of triple vacuum glazing
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Experimental measurement of hermetic edge seal's thermal conductivity for the thermal transmittance prediction of triple vacuum glazing

机译:密封边缘密封件导热系数的实验测量,用于预测三层真空玻璃的热透射率

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摘要

Thermal conductivity of hermetic edge-sealing materials plays an important part in the thermal transmittance (U-value) of the triple vacuum glazing. Thermal conductivity of Cerasolzer CS186 alloy and J-B Weld epoxy-steel resin were measured and validated with the mild-steel and indium using transient plane source method with a sensor element of double spiral and resistance thermometer in a hot disk thermal constants analyser TPS2500s are reported. The thermal conductivity data of Cerasolzer CS186 alloy and J-B Weld epoxy steel resin were measured to be 46.49Wm?1K?1and 7.47Wm?1K?1, with the deviations (using analytical method) of ±4% and ±7% respectively. These values were utilised to predict the thermal transmittance value of triple vacuum glazing using 3D finite element model. The simulated results show the centre-of-glass and total U-value of 300mm × 300mm triple vacuum glazing to be 0.33Wm?2K?1and 1.05Wm?2K?1, respectively. The influence of such a wide edge seal on the temperature loss spreading from the edge to the central glazing area is analysed, in which the predictions show wider edge seal has affected the centre-of-glass U-value to 0.043Wm?2K?1due to the temperature gradient loss spread to 54mm and 84mm on the cold and warm side respectively.
机译:密封边缘密封材料的热导率在三层真空玻璃的热透射率(U值)中起着重要的作用。报告了Cerasolzer CS186合金和J-B焊接环氧钢树脂的热导率,并采用瞬态平面源法,双螺旋传感器元件和电阻温度计在软盘热常数分析仪TPS2500s中用低碳钢和铟进行了验证。 Cerasolzer CS186合金和J-B Weld环氧钢树脂的热导率数据分别为46.49Wm?1K?1和7.47Wm?1K?1,(使用分析方法)偏差分别为±4%和±7%。这些值用于使用3D有限元模型预测三重真空玻璃的热透射率值。仿真结果表明,300mm×300mm三层真空玻璃的玻璃中心和总U值分别为0.33Wm?2K?1和1.05Wm?2K?1。分析了这种宽边缘密封对从边缘到中央玻璃区域的温度损失的影响,其中预测表明,较宽的边缘密封影响了玻璃中心U值至0.043Wm?2K?1due。温度梯度损失在冷侧和热侧分别扩展到54mm和84mm。

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