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Numerical simulation of slipstreams and wake flows of trains with different nose lengths passing through a tunnel

机译:不同鼻长穿过隧道的滑翔伞和唤醒流量的数值模拟

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摘要

This study examined the slipstreams induced by high-speed trains (HSTs) passing through a tunnel using the improved delayed detached eddy simulation (IDDES) method. First, the flow fields in the open air and in a tunnel were compared. Furthermore, the flow in a tunnel was analyzed in detail, considering the development of both instantaneous flow structures and slipstream profiles at various measurement points. Finally, by considering four different nose lengths (4 m, 7 m, 9 m, and 12 m), the differences in the slipstream profiles and the wake flow induced by HSTs passing through a tunnel were determined. The results show that the piston effect had a significant influence on the slipstream profiles, causing a larger positive peak when a train passed through a tunnel. The peaks of the slipstream profiles decrease as the distances from the center of the track (COT) and the top of the rail (TOR) increases. The results show that a long nose length can reduce the scale and strength of the instantaneous x-vorticity and y-vorticity in the wake propagation region, thereby lowering the maximum slipstream peaks. The 12-m nose length train induced 56.7% lower velocity than the 4-m nose length train at y = 2 m beside the COT and z = 0.2 m above the TOR. In particular, the standard deviations of the positive peaks of the seven cross-sections decrease by 38.4% with the increase in the nose length from 4 m to 12 m, which means that a longer nose length can reduce the turbulence level in the wake propagation region. Consequently, from the perspectives of the safety and comfort of trackside people, a long nose length train is strongly recommended.
机译:该研究检查了通过使用改进的延迟分离涡流模拟(IDDES)方法通过隧道通过隧道的高速列车(HSTS)引起的滑流。首先,比较露天和隧道中的流场。此外,考虑到在各种测量点处的瞬时流动结构和滑动曲线的发展,详细分析了隧道中的流动。最后,通过考虑四种不同的鼻长(4米,7米,9米和12米),确定滑流曲线的差异和通过隧道的HST引起的HST诱导的唤醒流程。结果表明,活塞效应对滑动型材有显着影响,当火车通过隧道时导致较大的正峰值。滑流式轮廓的峰值随着轨道(婴儿床)的中心和轨道(波纹)的距离而减小。结果表明,长鼻长可以降低唤醒传播区域中瞬时X型涡流和Y涡度的刻度和强度,从而降低最大滑流峰。 12米的鼻长火车诱导比在婴儿床和Z = 0.2米旁边的y = 2m的4-m鼻长火车比4-m长度列车诱导56.7%。特别地,七个横截面的正峰的标准偏差随着4米至12μm的鼻长而增加38.4%,这意味着较长的鼻长可以减少尾动传播中的湍流水平地区。因此,从轨道旁边的安全性和舒适性的角度来看,强烈建议使用长长的鼻子长度列车。

著录项

  • 来源
    《Tunnelling and underground space technology》 |2021年第2期|103701.1-103701.13|共13页
  • 作者单位

    Cent South Univ Minist Educ Key Lab Traff Safety Track Changsha 410075 Hunan Peoples R China|Joint Int Res Lab Key Technol Rail Traff Safety Changsha 410075 Hunan Peoples R China|Natl & Local Joint Engn Res Ctr Safety Technol Ra Changsha 410075 Hunan Peoples R China;

    Cent South Univ Minist Educ Key Lab Traff Safety Track Changsha 410075 Hunan Peoples R China|Joint Int Res Lab Key Technol Rail Traff Safety Changsha 410075 Hunan Peoples R China|Natl & Local Joint Engn Res Ctr Safety Technol Ra Changsha 410075 Hunan Peoples R China;

    Cent South Univ Minist Educ Key Lab Traff Safety Track Changsha 410075 Hunan Peoples R China|Joint Int Res Lab Key Technol Rail Traff Safety Changsha 410075 Hunan Peoples R China|Natl & Local Joint Engn Res Ctr Safety Technol Ra Changsha 410075 Hunan Peoples R China;

    Cent South Univ Minist Educ Key Lab Traff Safety Track Changsha 410075 Hunan Peoples R China|Joint Int Res Lab Key Technol Rail Traff Safety Changsha 410075 Hunan Peoples R China|Natl & Local Joint Engn Res Ctr Safety Technol Ra Changsha 410075 Hunan Peoples R China;

    Cent South Univ Minist Educ Key Lab Traff Safety Track Changsha 410075 Hunan Peoples R China|Joint Int Res Lab Key Technol Rail Traff Safety Changsha 410075 Hunan Peoples R China|Natl & Local Joint Engn Res Ctr Safety Technol Ra Changsha 410075 Hunan Peoples R China;

    Chalmers Univ Technol Dept Mech & Maritime Sci S-41296 Gothenburg Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    High-speed train; Railway tunnel; Train nose length; Slipstream; Wake flow;

    机译:高速列车;铁路隧道;火车鼻长;滑翔流;唤醒流动;

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