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Time-Dependent Simulations for the Directional Stability og High Speed Trains Under the Influence of Cross Winds or Cruising Inside Tunnels
FDA05/5_S.Krajnovic_ChalmersUniv

Authors

Sinisa Krajnovic* - Chalmers University of Technology
Hassan Hemida - Chalmers University of Technology
Ben Diedrichs - Royal Institute of Technology, Sweden

Abstract

Abstract

Large eddy simulation (LES) technique is used to study safety and comfort issues of cross-wind stability and lateral vehicle vibrations in double-track tunnel passages. A simplified train model is used to study flows at yaw angles of 90º and 35º  of the cross wind and Reynolds numbers of 3 X 10^5 and 3.7 X 10^5, respectively. LES results are compared with the experimental data and good agreement was found. For the LES investigation of lateral vibrations in tunnel, two high-speed trains are used, the German ICE2 and the Japanese Shinkansen S300. It is found that the lateral oscillations of the Shinkansen train orginate from the shape of the rear end. Besides, the small vortices formed at the front of the train, on the centre side of the tunnel, are found to govern the seperation at the rear of the Shinkansen train. The frequency of the lateral oscillations of the Shinkansen train in LES is St = 0.09 compared to St =o.1 measured in the experiments. In the same time no dominant frequency is found on the ICE2 train.

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