ISBN: 3540433163
TITLE: Transient Aerodynamics for Railway Optimization
AUTHOR: Schulte-Werning et al.
TOC:

I. General 1
D. KNRZER: Technology Acquisition Through the Research Framework Programmes of the European Union 3
B. SCHULTE-WERNING: The TRANSAERO Project - Joint European Railway Research on Transient Aerodynamics 11
II. Side Wind Effects 25
G. MATSCHKE, C. HEINE: Full Scale Tests on Side Wind Effects on Trains. Evalution of Aerodynamic Coefficients and Efficiency of Wind Breaking Devices 27
H. LIENHART: Wind Monitoring System for Full Scale Tests on Trains 39
C. BAKER: The Wind Tunnel Determination of Crosswind Forces and Moments on a High-Speed Train 46
C. FAUCHIER, E. LE DEVEHAT, R. GREGOIRE: Numerical Study of the Turbulent Flow Around the Reduced Scale Model of an Inter-Regio 61
W. KHIER, M. BREUER, F. DURST: Numerical Computation of 3-D Turbulent Flow Around High-Speed Trains Under Side Wind Conditions 75
G. MATSCHKE: WPl Side Wind Effects: Summary and Conclusions 87
III. Trains Passing Effects 99
G. MANCINI, A. MALFATTI: Full Scale Measurements on High Speed Train ETR 500 Passing in Open Air and in Tunnels of Italian High Speed Line 101
T. JOHNSON, S. DALLEY: 1/25 Scale Moving Model Tests for the TRANSAERO Project 123
T. BERENGER, A. KESSLER, R. GREGOIRE: Part 1: Panel Method Applied to the Prediction of Unsteady Effects Caused by High-Speed Trains Passing, in the Open Air and in Tunnels 136
T. BERENGER, R. GREGOIRE: Part 2: Panel Method Applied to Problems of European High-Speed Train Interoperability 148
K. PAHLKE: Application of the Standard Aeronautical CFD Method FLOWer to Trains Passing on Open Track 160
R. GREGOIRE: TRANSAERO Work Package 3: Trains Passing Effects - Summary and Conclusions 170
IV. Pressure Wave Effects 185
G. MATSCHKE, C. HEINE: Full Scale Tests on Pressure Wave Effects in Tunnels 187
V. BOURQUIN, M. MONKEWITZ, P. MONKEWITZ: Reduced-Scale Experiments for Railway Applications 196
M. BELLENOUE, T. KAGEYAMA: Reduced Scale Simulation of the Compression Wave Generated by the Entry of a High-Speed Train into a Tunnel 206
K. PAHLKE: Application of the Standard Aeronautical CFD Method FLOWer to ETR 500 Tunnel Entry 217
J.-M. RETY, R. GREGOIRE Numerical Simulation of the Pressure Wave Generated when a Train Enters a Tunnel 225
J.-M. RETY, R, GREGOIRE: Numerical Investigation of Tunnel Extensions Attenuating the Pressure Gradient generated by a Train Entering a Tunnel 239
A. VARDY, J. BROWN: An Overview of Wave Propagation in Tunnels 249
V. BOURQUIN, C. GILLIERON, P. MONKEWITZ: Experimental Analysis of the Propagation of Pressure Waves in Tubes 267
M. BELLENOUE, T. KAGEYAMA: Train Tunnel Geometry Effects on the Compression Wave Generated by a High-Speed Train 276
M. REITERER, K. EHRENDORFER, H. SOCKEL: Experimental Investigations of the Micro Pressure Wave 290
H. SOCKEL, M. REITERER, K. EHRENDORFFER, P. PESAVA, V. BENDIXEN: Measures for the Reduction of the Micro Pressure Wave 302
K. EHRENDORFFER, M. REITERER, H.SOCKEL: Numerical Investigations of the Micro Pressure Wave 321
M.J.-P. WILLIAM-LOUIS, R. GREGOIRE: 1-d Calculations of Pressure Fluctuations Outside and Inside a Pressure Sealed High-Speed Trainset Travelling Through Tunnels 342
H.-J. WORMSTALL-REITSCHUSTER: l-d Calculations of Pressure Change due to Passage of an ETR 500 Through the Terranuova LeVille Tunnel 358
B. SCHULTE-WERNING, G. MATSCHKE: TRANSAERO Work Package 4: Pressure Wave Effects - Summary and Conclusions - 367
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