高空螺旋隧道曲率对喷气扇空间布局的影响研究

Zijian Wang, Qi Liu, Hao Li, Bin Zhang, Liming Wu, Sichang Wang, Chaolin Jia
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引用次数: 0

摘要

在高空螺旋隧道的运营通风过程中,射流风机的安装方式是决定隧道通风效率的关键因素。本研究采用 CFD 数值模拟方法,建立了不同曲率半径螺旋隧道的三维通风模型。通过正交实验,研究了在射流风机横向间距、风机垂直高度、纵向间距和横向偏移等因素的耦合影响下,隧道曲率半径对空气射流流场特性的影响。结果表明,当 R = 500 米、600 米、700 米和 800 米时,纵向间距对通风效率的影响最大,其次是垂直高度,而横向偏移和风机间距的影响最小。在不同曲率半径下,风扇组的最佳间距和垂直高度保持一致,分别为 1.25D(风扇直径)和 15 厘米。扇形组的最佳纵向间距分别为 90 米、90 米、135 米和 90 米。将风扇组向隧道螺旋线内侧移动 0.25 至 0.75 米(R < 700 米时)可优化隧道内的流场分布。最后,针对不同螺旋隧道半径下风机空间位置的最佳安装参数,建立了螺旋半径与风机组横向偏移和纵向间距之间的关系表达式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on the Influence of High-Altitude Helical Tunnel Curvature on Jet Fan Spatial Layout
During the operational ventilation process of high-altitude helical tunnels, the installation method of jet fans is a key factor in determining the ventilation efficiency of the tunnel. In this study, the CFD numerical simulation method is adopted to establish three-dimensional ventilation models of helical tunnels with different curvature radii. Through orthogonal experiments, the effects of tunnel curvature radius on the characteristics of the air jet flow field, under the coupled influences of factors such as lateral spacing of jet fans, vertical height of fans, longitudinal spacing, and lateral offset, are investigated. The results show that when R = 500 m, 600 m, 700 m, and 800 m, the longitudinal spacing has the most significant impact on ventilation efficiency, followed by vertical height, with lateral offset and fan spacing having the least impact. The optimal spacing and vertical height of the fan groups remain consistent under different curvature radii, at 1.25D (fan diameter) and 15 cm, respectively. The optimal longitudinal spacing of the fan groups is 90 m, 90 m, 135 m, and 90 m, respectively. Shifting the fan groups 0.25 to 0.75 m towards the inner side of the tunnel helix (for R < 700 m) can optimize the flow field distribution within the tunnel. Finally, expressions for the relationship between the helical radius and the lateral offset and longitudinal spacing of the fan groups are established for the optimal installation parameters of fan spatial positions under different helical tunnel radii.
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