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A NUMERICAL STUDY OF THE TRAIN-INDUCED UNSTEADY AIRFLOW IN A SUBWAY TUNNEL WITH NATURAL VENTILATION DUCTS USING THE DYNAMIC LAYERING METHOD 被引量:17

A NUMERICAL STUDY OF THE TRAIN-INDUCED UNSTEADY AIRFLOW IN A SUBWAY TUNNEL WITH NATURAL VENTILATION DUCTS USING THE DYNAMIC LAYERING METHOD
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摘要 The objective of this study is to investigate numerically the characteristics of train-induced unsteady airflow in a subway tunnel with natural ventilation ducts.A three-dimensional numerical model using the dynamic layering method for the moving boundary of a train is first developed,and then it is validated against the model tunnel experimental data.With the tunnel and subway train geometries in the numerical model exactly the same as those in the model tunnel experimental test,but with the ventilation ducts being connected to the tunnel ceiling and a barrier placed at the tunnel outlet,the three-dimensional train-induced unsteady tunnel flows are numerically simulated.The computed distributions of the pressure and the air velocity in the tunnel as well as the time series of the mass flow rate at the ventilation ducts reveal the impact of the train motion on the exhaust and suction of the air through ventilation ducts and the effects of a barrier placed at the tunnel outlet on the duct ventilation performance.As the train approaches a ventilation duct,the air is pushed out of the tunnel through the duct.As the train passes the ventilation duct,the exhaust flow in the duct is changed rapidly to the suction flow.After the train passes the duct,the suction mass flow rate at the duct decreases with time since the air pressure at the opening of the duct is gradually recovered with time.A drastic change in the mass flow rate at a ventilation duct while a train passes the corresponding ventilation duct,causes a change in the exhaust mass flow rate at other ventilation ducts.Also,when a barrier is placed at the tunnel outlet,the air volume discharge rate at each ventilation duct is greatly increased,i.e.,the barrier placed at the tunnel outlet can improve remarkably the ventilation performance through each duct. The objective of this study is to investigate numerically the characteristics of train-induced unsteady airflow in a subway tunnel with natural ventilation ducts.A three-dimensional numerical model using the dynamic layering method for the moving boundary of a train is first developed,and then it is validated against the model tunnel experimental data.With the tunnel and subway train geometries in the numerical model exactly the same as those in the model tunnel experimental test,but with the ventilation ducts being connected to the tunnel ceiling and a barrier placed at the tunnel outlet,the three-dimensional train-induced unsteady tunnel flows are numerically simulated.The computed distributions of the pressure and the air velocity in the tunnel as well as the time series of the mass flow rate at the ventilation ducts reveal the impact of the train motion on the exhaust and suction of the air through ventilation ducts and the effects of a barrier placed at the tunnel outlet on the duct ventilation performance.As the train approaches a ventilation duct,the air is pushed out of the tunnel through the duct.As the train passes the ventilation duct,the exhaust flow in the duct is changed rapidly to the suction flow.After the train passes the duct,the suction mass flow rate at the duct decreases with time since the air pressure at the opening of the duct is gradually recovered with time.A drastic change in the mass flow rate at a ventilation duct while a train passes the corresponding ventilation duct,causes a change in the exhaust mass flow rate at other ventilation ducts.Also,when a barrier is placed at the tunnel outlet,the air volume discharge rate at each ventilation duct is greatly increased,i.e.,the barrier placed at the tunnel outlet can improve remarkably the ventilation performance through each duct.
出处 《Journal of Hydrodynamics》 SCIE EI CSCD 2010年第2期164-172,共9页 水动力学研究与进展B辑(英文版)
基金 supported by the Basic Science Research Program through the National Research Foundation of Korea (NRF) funded by the Ministry of Education, Science and Technology (Grant No. 2009-0063383) the Seoul R and BD program (Grant No. CS070160) the Leading Academic Discipline Project of Shanghai Municipal Education Commission (Grant No. J50502)
关键词 train-induced flow subway tunnel natural ventilation duct ventilation performance dynamic layering method train-induced flow subway tunnel natural ventilation duct ventilation performance dynamic layering method
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  • 1CHEN T Y,LEE Y T.Investigations of piston-effect and jet fan-effect in model vehicle tunnels[J].J Wind Eng Ind Aerodyn,1998,73:99-100.
  • 2SHIN C H,PARK W G.Numerical study of flow characteristics of the high speed train entering into a tunnel[J].Mech Res Commun,2003,30:287-296.
  • 3OGAWA T,FUJII K.Numerical investigation of three-dimensional compressible flows induced by a train moving into a tunnel[J].Comput & Fluids,1997,26(6):565-585.
  • 4KE M-T,CHENG T C.Numerical simulation for optimizing the design of subway environmental control system[J].Building and Enviro,2002,37:1139-1152.
  • 5Wu B,Gebremedhin K G.CFD Development and Simulation of Flow Fields in Ventilated Spaces with Multiple Occupants[J].Transaction of ASHARE,2001,44 (6):1839-1850.
  • 6Yakhot V,Orszag S A.Renormalization Group Analysis of Turbulence.Ⅰ.Basic Theory[J].Journal of Scientific Computing,1986,1 (1):39-51.
  • 7铁道部第二勘察设计院.回顾与思考-广州市地下铁道一号线工程设计总结[M].北京:中国铁道出版社,2002:956-957.
  • 8Hur N,Wan C S.A Numerical Simulation of the Trackway Exhaust System (TES) for Underground Stations of Seoul 11th line:Ventilation Operation and Smoke Exhaust Operation in Case of a Carriage Fire[C] //Proceedings of the 11th International Symposium of Aerodynamics and Ventilation of Vehicle Tunnel.Luzern:Mech Eng Publ Ltd,2003:231-242.
  • 9国家技术监督局.GB 50157-92地下铁道设计规范[S].北京:中国标准出版社,1992.
  • 10Ming-Tsun Ke, Tsung-Che Cheng. Numerical Simulation for Optimizing the Design of Subway Environmental Control System [ J ]. Building and Environment, 2002, 37: 1139-1152.

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