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Discharge coefficient of centre-pivot roof windows

机译:中央枢轴天窗的出水系数

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Use of centre-pivot roof windows is very common in single family houses in Nordic Europe. Unfortunately the wind-driven airflow characteristics of this kind of windows are missing in the scientific literature. In the present study, the airflow rate through the window was specified by using the discharge coefficient. Wind tunnel measurements using a modelled centre-pivot roof window was used in the present study. For smaller sash opening angles the value of discharge coefficient was approaching unity and the discharge coefficient decreased with increase in the sash opening angle. The value of 0.6 was only obtained when the window was without sash. Hence, the inclusion of sash improved the airflow characteristics of the window due to increased value of the discharge coefficient. The discharge coefficient also depended on turbulence in the flow. In the absence of external wind, the turbulence was described by the value of Re. Only for higher values of Re the still-air discharge coefficients became independent of the flow direction and the air velocity. Whereas for wind driven natural ventilation the ratio of average air speed within the opening and the reference wind speed (velocity ratio) was used to define the fully developed turbulent flow. Constant values of wind-driven discharge coefficients were obtained when the average air speed within the opening was equal to or greater than the reference wind speed i.e. the velocity ratio greater than unity. Moreover, when the velocity ratio was greater than unity, the still-air discharge coefficients became identical to the wind-driven discharge coefficients. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在北欧欧洲的独户房屋中,通常使用中轴旋转天窗。不幸的是,这种窗的风驱动气流特性在科学文献中是缺失的。在本研究中,使用排放系数指定了穿过窗户的气流速率。在本研究中,使用了建模的中心枢轴屋顶窗进行风洞测量。对于较小的窗扇开度角,排出系数的值接近于1,并且排出系数随着窗扇开度角的增加而减小。仅当窗户没有窗扇时才获得0.6的值。因此,由于增加了排放系数的值,窗扇的加入改善了窗户的气流特性。排放系数还取决于流动中的湍流。在没有外部风的情况下,湍流用Re的值表示。仅对于较高的Re值,静止空气的排放系数变得与流动方向和空气速度无关。对于风驱动的自然通风,开口内的平均风速与参考风速(速度比)之比用于定义充分发展的湍流。当开口内的平均风速等于或大于参考风速,即风速比大于1时,获得风驱动排放系数的常数值。而且,当速度比大于1时,静止空气的排放系数变得与风驱动的排放系数相同。 (C)2015 Elsevier Ltd.保留所有权利。

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