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Experimental investigation and dynamic modeling of a triple-glazed exhaust air window with built-in venetian blinds in the cooling season

机译:冷却季节内置威尼斯百叶窗的三层玻璃排气窗的实验研究和动态建模

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摘要

A new triple-glazed exhaust air window with built-in venetian blinds is described and investigated in this paper. In this type of window, the exhaust air passes through the air cavity between the glass panes before being released to the outdoor environment. Part of the heat or cold energy inherent in the exhaust air can be recovered. The temperature differential between the interior surface of window and indoor air can be directly reduced, which would benefit the indoor thermal comfort. To investigate the dynamic thermal behavior of the triple-glazed exhaust air window, an improved zonal model was built and validated by using the on-site experimental data. Temperature distributions of this window in both vertical and horizontal directions were analyzed. The influences of the airflow velocity in ventilated cavity and the slat angle of venetian blinds on the thermal performance of the window on a typical summer day were quantitatively investigated. The U-values of this window under different airflow velocities were also calculated. Results show that the temperature differential between inner glass pane and indoor air varies from 0.5 degrees C to 2.6 degrees C, and shows a relatively low fluctuation throughout the whole day. The heat gain through the window can be reduced as high as 42.3% in the cooling season, when the airflow velocity varies from the 0.1 m/s to 0.5 m/s. At an airflow velocity of 0.5 m/s, the U-value of the window can be decreased to 0.7 W/(m(2) K).
机译:在本文中描述和研究了一个新的三层玻璃排气窗,并研究了具有内置威尼斯百叶窗。在这种类型的窗口中,排气空气在释放到室外环境之前穿过玻璃窗之间的空气腔。可以回收排气中固有的一部分热量或冷能的热量或冷能。窗口内表面和室内空气之间的温差可以直接降低,这将有利于室内热舒适度。为了研究三层玻璃排气窗口的动态热行为,通过使用现场实验数据建立和验证改进的Zonal模型。分析了该窗口在垂直和水平方向上的温度分布。定量研究了通风腔内气流速度和威尼斯百叶窗的百叶窗的线杆角度的影响。还计算了在不同气流速度下该窗口的U值。结果表明,内玻璃窗格和室内空气之间的温差从0.5℃变化至2.6摄氏度,并在整个一天中显示出相对低的波动。当气流速度从0.1m / s变化至0.5米/秒时,通过窗口的热增益可以减小到冷却季节中的高达42.3%。在0.5 m / s的气流速度下,窗口的U值可以降低至0.7 w /(m(2)k)。

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