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Numerical study on aerodynamic pressure caused by high-speed train passing through the subway station

Liu, Minzhang (author)
School of Energy and Safety Engineering, Tianjin Chengjian University, Tianjin, China
Li, Chanyuan (author)
School of Energy and Safety Engineering, Tianjin Chengjian University, Tianjin, China
Chang, Ru (author)
School of Energy and Safety Engineering, Tianjin Chengjian University, Tianjin, China
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Yang, Bin (author)
Umeå universitet,Institutionen för tillämpad fysik och elektronik,School of Energy and Safety Engineering, Tianjin Chengjian University, Tianjin, China
Lai, Yanping (author)
School of Energy and Safety Engineering, Tianjin Chengjian University, Tianjin, China
Liu, Weiyue (author)
School of Energy and Safety Engineering, Tianjin Chengjian University, Tianjin, China
Zhang, Huan (author)
School of Environmental Science and Engineering, Tianjin University, Tianjin, China; National Engineering Laboratory for Digital Construction and Evaluation Technology of Urban Rail Transit, Tianjin, China
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 (creator_code:org_t)
2024
2024
English.
In: The International Journal of Ventilation. - : Taylor & Francis. - 1473-3315 .- 2044-4044.
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • As the demand for efficient travel increased, the train speed is greatly increased and the subway gradually appeared the express train and the slow train. Express trains pass through some stations without stopping. In this case, the pressure transient phenomenon in the tunnel will become severe. In this study, the dynamic mesh simulation is used to study the pressure variations of the tunnel, platform screen door (PSD), and airshaft caused by the piston wind which is generated by the high-speed train passing through the tunnel and station. The effects of train speed, modes of the train passing through the station, number of airshafts and station types on the aerodynamic pressure are analyzed. The results demonstrate that the increase in train speed brings new challenges to the loading capacity of tunnel structure. Airshafts are set at the entrance and exit of the station, which is conducive to the pressure relief of each part of the tunnel structure. Furthermore, a new type of station with two tracks (express line and slow line) is conducted. The peak pressure of PSD is reduced by 48% compared with the conventional station. This study will contribute to the improvement of subway construction and provide theoretical and data support for the operation of the high-speed train.

Subject headings

TEKNIK OCH TEKNOLOGIER  -- Samhällsbyggnadsteknik -- Transportteknik och logistik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Civil Engineering -- Transport Systems and Logistics (hsv//eng)

Keyword

aerodynamic pressure
dynamic mesh simulation
high-speed train
piston wind
Subway tunnel

Publication and Content Type

ref (subject category)
art (subject category)

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