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Experimental and numerical study of natural ventilation in four-sided wind tower traps

机译:四面风塔疏水阀自然通风的实验与数值研究

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In the past, wind towers were applied as the main architectural part of building construction in the desert areas of Iran. These almost high structures were used as cooling load suppliers at residential buildings. In the present study, the effect of symmetric four-sided wind tower in flow induction to the bottom space has been analysed by using a wind tunnel and numerical simulations. In the numerical simulation, the flow is assumed to be three-dimensional, unsteady, compressible and turbulent. The experimental studies have been performed by placing a model of these structures at a laboratory wind tunnel. At this state, crossing airflow through every channel is measured for analysing the induction performance of wind tower at different angles of wind blowing. Moreover, the turbulence effect is analysed by adding horizontal and vertical blades and crowns at the top and bottom of the internal gate of traps for attaining better performance. Two different geometries are used for simulations. The results showed that inserting the blade and crown at the bottom and topaffect on the flow rate have effect on the flow rate. For instance, inserting horizontal blades and crown at the top of the model leads to 8 and 16% increase in the flow rate, respectively. The results of the numerical simulations have shown acceptable agreement with experimental results.
机译:过去,风塔被用作伊朗沙漠地区建筑施工的主要建筑部分。这些几乎高的结构被用作住宅建筑物的冷却负荷供应商。在本研究中,通过使用风洞和数值模拟,分析了对称四面风塔在流向底部空间的影响。在数值模拟中,假定流动是三维的,不稳定的,可压缩的和湍流的。通过将这些结构的模型放置在实验室风洞中进行了实验研究。在此状态下,测量通过每个通道的交叉气流,以分析在不同风向下风塔的进气性能。此外,通过在疏水阀的内部闸门的顶部和底部增加水平和垂直叶片和顶部来分析湍流效果,以获得更好的性能。仿真使用了两种不同的几何形状。结果表明,在流量的底部和顶部插入刀片和表冠会影响流量。例如,在模型的顶部插入水平叶片和表冠会分别导致流量增加8%和16%。数值模拟结果与实验结果吻合良好。

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