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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Summer study on thermal performance of an exhausting airflow window in evaporatively-cooled buildings
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Summer study on thermal performance of an exhausting airflow window in evaporatively-cooled buildings

机译:蒸发冷却建筑中排气气流窗的热性能的夏季研究

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By using exhaust mode ventilated windows in buildings cooled by evaporative cooler, the air flow channel of the window can play the role of natural relief air path. Thereby, the cooling potential of the relief air can be recovered and used to improve the thermal performance of the ventilated window. This paper investigates the thermal performance of an exhausting ventilated window in a typical evaporatively-cooled space. In this study, a zonal model has been used for simulation. The numerical approach was validated with reported experimental data and good agreement was shown. Results showed that the heat gain and the maximum daily temperature of the interior glass pane of the proposed ventilated window are less than those of the conventional double-glazed window. Providing natural relief through ventilated window can cause extra pressure drop and consequently reducing cooling capacity. This may also disturb the occupant's comfort due to noise issue. Hence, the impacts of window aspect ratio and thickness of the air flow channel have been investigated as effective factors on pressure drop and sound power level. Eventually, a step by step procedure has been proposed for determining the geometric parameters of the ventilated window for practical use in evaporatively-cooled buildings.
机译:通过使用蒸发冷却器冷却的建筑物中的排气模式通风窗口,窗口的空气流动通道可以发挥自然浮雕空气路径的作用。由此,可以回收浮雕空气的冷却电位,并用于改善通风窗的热性能。本文研究了典型的蒸发冷却空间中排气通风窗的热性能。在这项研究中,Zonal模型已被用于模拟。报告的实验数据验证了数值方法,并显示了良好的一致性。结果表明,所提出的通风窗口内部玻璃窗格的热增益和最大日温度小于传统双层玻璃窗的玻璃窗。通过通风窗口提供天然浮雕会导致额外的压降,从而降低冷却能力。这也可能会因噪音问题而扰乱乘员的舒适度。因此,已经研究了窗宽比和空气流动通道的厚度的影响是压降和声功率水平的有效因素。最终,已经提出了一种步进过程,用于确定通气窗口的几何参数,以便在蒸发冷却的建筑物中使用。

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