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Evaluation of inside surface condensation in double glazing window system with insulation spacer: A case study of residential complex

机译:带有隔热垫的双层玻璃窗系统内表面凝结的评估:以住宅区为例

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Aluminum spacer used to keep the glass panes apart acts as a thermal bridge that increases the risk of inside surface condensation due to its high thermal conductivity. In this study, the inside surface condensation in double glazing window systems with conventional aluminum spacer and insulation spacers made of thermally broken aluminum and thick-walled plastic, respectively, is evaluated. Evaluation method and judgment criteria for preventing inside surface condensation are suggested. Thermal characteristics of window system in residential unit are analyzed and two-dimensional steady state heat transfer simulation is carried out in order to obtain the lowest inside surface temperature. The results show that the application of insulation spacer can substantially increase the lowest inside surface temperature, temperature difference ratio and inside air humidity for preventing inside surface condensation and satisfy the required minimum temperature difference ratio.
机译:用于保持玻璃窗格分开的铝质隔垫起着热桥的作用,由于其高导热性而增加了内表面凝结的风险。在这项研究中,评估了双层玻璃窗系统的内表面凝结,分别使用常规的铝隔层和分别由热破碎铝和厚壁塑料制成的绝缘隔层。建议用于防止内表面凝结的评估方法和判断标准。分析了住宅单元窗户系统的热特性,并进行了二维稳态传热模拟,以获得最低的内表面温度。结果表明,使用绝缘间隔件可实质上提高最低的内表面温度,温差比和内部空气湿度,以防止内表面凝结并满足所需的最小温差比。

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