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Study of the optimal pitch angle of jet fans in road tunnels based on turbulent jet theory and numerical simulation

机译:基于湍流射流理论和数值模拟的公路隧道射流风机最佳俯仰角研究

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摘要

The diffusion angle of the air jet and the optimal pitch angle (OPA) of the jet fan are studied and compared through turbulent jet theory and FLUENT numerical simulation in this paper. The optimal design pitch angle of jet fans with different outlet diameters and velocities is systematically provided, rather than based on a specific outlet diameter and velocity of the jet fan or only put forward a rough range. The results show that, tilting the fan outlet with a certain angle can reduce the wall shear stress (WSS) and improve the pressure-rise coefficient. The full diffusion angle (FDA) is greatly influenced by the outlet diameter and velocity, while the semi-diffusion angle (SDA) is relatively steady and fluctuates around 6 degrees. Meanwhile, the OPA is hardly affected by the outlet velocity and mainly influenced by the outlet diameter. The OPA is 8 degrees for the jet fan with the diameter less than or equal to 900 mm and 6 degrees for the jet fan diameter more than 900 mm. Moreover, the pressure-rise coefficient will be improved under the OPA and the relative increase rate is between 5.9% and 44.5% compared with that of no pitch angle. This study can provide reference and guidance for the performance research of alternative jet fans in fire case and the optimization design of ventilation systems in road tunnels.
机译:本文通过湍流射流理论和FLUENT数值模拟研究和比较了空气射流的扩散角和射流风扇的最佳桨距角(OPA)。系统地提供了具有不同出口直径和速度的射流风扇的最佳设计螺距角,而不是基于特定的出口直径和射流风扇的速度或仅提出了一个粗略的范围。结果表明,将风扇出风口倾斜一定角度可以减小壁面剪应力(WSS),提高压升系数。全扩散角(FDA)受到出口直径和速度的很大影响,而半扩散角(SDA)相对稳定,并在6度左右波动。同时,OPA几乎不受出口速度的影响,而主要受出口直径的影响。直径小于或等于900毫米的喷气风扇的OPA为8度,直径大于900毫米的喷气风扇的OPA为6度。此外,在OPA下压力上升系数将得到改善,与无俯仰角相比,其相对增长率在5.9%至44.5%之间。该研究可为替代射流风机在火灾中的性能研究以及公路隧道通风系统的优化设计提供参考和指导。

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