王 峰, 王明年, 邓园也. 曲线公路隧道行车间距对活塞效应的影响研究[J]. 工程力学, 2011, 28(6): 195-199.
引用本文: 王 峰, 王明年, 邓园也. 曲线公路隧道行车间距对活塞效应的影响研究[J]. 工程力学, 2011, 28(6): 195-199.
WANG Feng, WANG Ming-nian, DENG Yuan-ye. RESEARCH ON EFFECTS OF VEHICLE SPACE ON THE PISTON EFFECT IN A CURVED HIGHWAY TUNNEL[J]. Engineering Mechanics, 2011, 28(6): 195-199.
Citation: WANG Feng, WANG Ming-nian, DENG Yuan-ye. RESEARCH ON EFFECTS OF VEHICLE SPACE ON THE PISTON EFFECT IN A CURVED HIGHWAY TUNNEL[J]. Engineering Mechanics, 2011, 28(6): 195-199.

曲线公路隧道行车间距对活塞效应的影响研究

RESEARCH ON EFFECTS OF VEHICLE SPACE ON THE PISTON EFFECT IN A CURVED HIGHWAY TUNNEL

  • 摘要: 结合正在建设的实际工程项目,采用数值计算方法对曲线隧道内行车间距及车速对活塞效应的影响进行分析。结果表明:汽车进入隧道和驶出隧道时,隧道断面平均风速明显增大;当汽车在隧道内行驶时,汽车与隧道壁面的环状空间及尾部内均出现了强烈的回流及涡流现象;行车间距的增加有利于提高汽车有效阻力系数,增强汽车产生的活塞效应。在相同的行车间距下,较高的车速有利于提高汽车产生的活塞风,但队列下游行驶的汽车将严重的受到上游行驶汽车尾流的影响,导致汽车阻力系数的下降。

     

    Abstract: Based on a real project under construction, a numerical method was carried out to analyze the influence of vehicle spaces and speed on the piston-effect in a curved tunnel. The results show that the average air speed on the cross-section in the tunnel improves significantly as the vehicle runs into and out of a tunnel. When vehicles are travelling in a tunnel, the strong backflow and a vortex can be found in the annular space between vehicles and tunnel walls, as well as the tail of vehicles. The increasing length of the vehicle space can improve the vehicle effective drag coefficient and intensify the piston effect. Under the condition of the same vehicle space, the piston wind will increase with the increase of the vehicle speed. However, the vehicle downstream will suffer seriously from the wake flow of the vehicle upstream, which will make the vehicle effective drag coefficient decline.

     

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