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An experimental study on the evaluation of natural ventilation performance of a two-sided wind-catcher for various wind angles

机译:不同风向角下双面捕风器自然通风性能评估的实验研究

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Natural ventilation performance of a two-sided wind-catcher is investigated for various wind angles (alpha = 0 degrees-90 degrees) and wind speeds by experimental wind tunnel and smoke flow visualization. A 1:50 scale model of a real wind-catcher in the city of Yazd (Iran) is employed. The pressure coefficient as well as velocity are measured by pressure taps and hot-wire anemometer, respectively. The hot-wire results are used to evaluate the induced airflow rate and turbulence intensity. Smoke flow visualization techniques are employed to study the flow structure and patterns inside and outside of the wind-catcher. The results indicate that the wind direction has a large influence on the wind-catcher performance and the induced airflow rate increases with increasing the wind speed. The hot-wire results show that the transition angles of the house window and windward opening for all wind speeds occur at the wind angles of 39 degrees and 55 degrees, respectively. An excellent agreement is also found for these transition angles when they are determined by measured pressure coefficients. Based on measured quantities, it is found that the wind-catcher acts as a chimney for the wind angle larger than the windward transition angle (alpha = 55 degrees) and the highest ventilation rate occurs at the wind angle of 90 degrees. (c) 2015 Elsevier Ltd. All rights reserved.
机译:通过实验风洞和烟流可视化,研究了在不同风向角(α= 0度至90度)和风速下,双面挡风板的自然通风性能。使用Yazd(伊朗)市中的实际捕风者的1:50比例模型。压力系数和速度分别通过压力分接头和热线风速计测量。热线结果用于评估诱导的气流速率和湍流强度。烟流可视化技术用于研究捕风器内部和外部的流动结构和模式。结果表明,风向对捕风器性能有较大影响,并且随着风速的增加,诱导风量增加。热线结果表明,对于所有风速,房屋窗户和迎风开口的过渡角分别出现在39度和55度的风角处。当这些过渡角由测得的压力系数确定时,也找到了极好的协议。根据测量的量,发现对于较大的迎风角(α= 55度),迎风器起到了烟囱的作用,而在迎风角为90度时,通风率最高。 (c)2015 Elsevier Ltd.保留所有权利。

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