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Moving model analysis on the transient pressure and slipstream caused by a metro train passing through a tunnel

机译:地铁通过隧道引起的瞬态压力和滑流的运动模型分析

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摘要

In this study, the spatial distribution of the transient pressure and the slipstream caused by a 1/10 scaled metro train passing through a tunnel was studied with moving model test. We hereby investigate the mechanism underlying the mitigation of the transient pressure on both the train surface and tunnel wall, as well as that of the slipstream in the tunnel. Experimental results showed that the airshaft at different locations in a tunnel had different pressure relief effects. The most significant pressure amplitude decreased by 36.0% with the airshaft locating in the middle of the tunnel. Meanwhile, the slipstream speed was also relieved from 0.45 to 0.36 after an airshaft. We also assessed and analyzed the impact of train speed on the transient pressures and slipstream. It was found that the increase of the train speed would increase the transient pressure and slipstream speed, but it did not effect their spatial distribution.
机译:在这项研究中,通过运动模型试验研究了由1/10比例缩放的地铁列车通过隧道引起的瞬态压力和滑流的空间分布。我们在此研究缓解列车表面和隧道壁以及隧道中滑流的瞬态压力的根本机理。实验结果表明,隧道内不同位置的气井具有不同的卸压效果。当空气轴位于隧道中间时,最显着的压力幅度下降了36.0%。同时,空气轴流后,滑流速度也从0.45降低到0.36。我们还评估并分析了列车速度对瞬态压力和滑流的影响。发现列车速度的增加会增加瞬态压力和滑流速度,但不会影响其空间分布。

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