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Experimental Investigation of Thermal Behaviors in Window Systems by Monitoring of Surface Condensation Using Full-Scale Measurements and Simulation Tools

机译:通过使用全尺寸测量和仿真工具监测表面凝结来对窗户系统热行为进行实验研究

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The aim of the present study was to investigate the thermal performance of window systems using full-scale measurements and simulation tools. A chamber was installed on the balcony of an apartment to control the temperatures which can create condensation on the interior surfaces of window systems. The condensation process on the window was carefully scrutinized when outdoor and indoor temperature and indoor relative humidity ranged from ?15 °C to ?20 °C, 23 °C to 24 °C, and 50% to 65%, respectively. The results of these investigations were analyzed to determine how the moisture is influenced by changing temperatures. It appears that the glass-edge was highly susceptible to the temperature variations and the lowest temperature on the glass edge was caused by the heat transfer through the spacer, between the two glass panels of the window. The results from the simulation used in this study confirm that the thermal performance of window systems can be improved the use of super insulated or thermally broken spacers. If the values of the indoor humidity and temperature are given, then the outdoor temperature when condensation forms can be obtained by using Temperature Difference Ratio (TDR). This methodology can be employed to predict the possible occurrence of condensation.
机译:本研究的目的是研究使用全尺寸测量和模拟工具的窗户系统的热性能。一个房间安装在公寓的阳台上,以控制温度,该温度可在窗户系统的内表面产生冷凝。当室外和室内温度和室内相对湿度分别为?15°C到?20°C,23°C到24°C和50%到65%时,要仔细检查窗户上的冷凝过程。分析了这些调查的结果,以确定湿度如何受到温度变化的影响。看来玻璃边缘很容易受到温度变化的影响,并且玻璃边缘上的最低温度是由通过窗玻璃两块玻璃板之间的垫片传热引起的。本研究中使用的模拟结果证实,使用超级绝缘或热破坏的垫片可以改善窗户系统的热性能。如果给出了室内湿度和温度的值,则可以通过使用温差比(TDR)获得结露时的室外温度。该方法可以用于预测可能发生的冷凝。

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