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Experimental Verification of Method to Synthesize the Track Vertical Irregularities


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[1]. J. EVANS, M. BERG: “Challenges in simulation of rail vehicle dynamics”, Vehicle System Dynamics, Vol. 47, pp. 1023–1048, 2009.Search in Google Scholar

[2]. S. IWNICKI: “Handbook of railway vehicle dynamics”, CRC Press Taylor & Francis Group, 200610.1201/9781420004892Search in Google Scholar

[3]. G. SCHUPP: “Simulation of railway vehicles: Necessities and applications, mechanics based design of structures and machines”, Vol. 31, Issue 3, pp. 297-314, 200310.1081/SME-120022852Search in Google Scholar

[4]. J. POMBO, J. AMBRÓSIO: “An alternative method to include track irregularities in railway vehicle dynamic analyses”, Nonlinear Dynamics, Vol. 68, Issue 1-2, pp 161-176, 201210.1007/s11071-011-0212-2Search in Google Scholar

[5]. M. STEENBERGEN: “Modelling of wheels and rail discontinuities in dynamic wheel-rail contact analysis”, Vehicle System Dynamics, Vol. 44, Issue 10, pp. 763-787, 200610.1080/00423110600648535Search in Google Scholar

[6]. V.K. GARG, R.V. DUKKIPATI: “Dynamics of Railway Vehicle Systems”, Toronto, Canada: Academic Press Canada, 198410.1016/B978-0-12-275950-5.50016-XSearch in Google Scholar

[7]. P. GULLERS, L. ANDERSSON, R. LUNDÉN, “High-frequency vertical wheel– rail contact forces—Field measurements and influence of track irregularities”, Wear, Vol. 265, Iss. 9–10, pp. 1472–1478, 200810.1016/j.wear.2008.02.035Search in Google Scholar

[8]. T. MAZILU: “Analysis of infinite structure response due to moving wheel in the presence of irregularities via Green’s functions method”, Proceedings of the Romanian Academy, Series A: Mathematics, Physics, Technical Sciences, Information Science, Vol. 10, pp. 139-150, 2009Search in Google Scholar

[9]. T. MAZILU: “On the dynamic effects of wheel running on discretely supported rail”, Proceedings of the Romanian Academy, Series A: Mathematics, Physics, Technical Sciences, Information Science, Vol. 10, pp. 269-276, 2009Search in Google Scholar

[10]. M. DUMITRIU: “Analysis of the dynamic response in the railway vehicles to the track vertical irregularities. Part I: The theoretical model and the vehicle response functions”, Journal of Engineering Science and Technology Review, Vol. 8, Issue 4, pp. 24 – 31, 201510.25103/jestr.084.04Search in Google Scholar

[11]. M. DUMITRIU: “Analysis of the dynamic response in the railway vehicles to the track vertical irregularities. Part II: The numerical analysis”, Journal of Engineering Science and Technology Review, Vol. 8, Issue 4, pp. 32 – 39, 201510.25103/jestr.084.05Search in Google Scholar

[12]. S. MOHAMMADZADEH, M. SANGTARASHHA, H. MOLATEFI: “A novel method to estimate derailment probability due to track geometric irregularities using reliability techniques and advanced simulation methods”, Archive of Applied Mechanics, Vol. 81, pp. 1621–1637, 201110.1007/s00419-011-0506-3Search in Google Scholar

[13]. H. TSUNASHIMA, Y. NAGANUMA, T. KOBAYASH: “Track geometry estimation from car-body vibration”, Vehicle System Dynamics, Vol. 52 supplement, pp. 207-219, 201410.1080/00423114.2014.889836Search in Google Scholar

[14]. H. CLAUS, W. SCHIEHLEN: “Modeling and simulation of railway bogie structural vibrations”, Vehicle System Dynamics, Vol. 28, pp. 538-552, 199810.1080/00423119808969585Search in Google Scholar

[15]. M.X.D. LI, E.G. BERGGREN, M. BERG, I. PERSSON: “Assessing track geometry quality based on wavelength spectra and track–vehicle dynamic interaction”, Vehicle System Dynamics, Vol. 46, pp. 261–276, 200810.1080/00423110801935871Search in Google Scholar

[16]. B. SUAREZ, J. FELEZ, J.A. LOZANO, P. RODRIGUEZ: “Influence of the track quality and of the properties of the wheel–rail rolling contact on vehicle dynamics”, Vehicle System Dynamics, Vol. 51, Iss. 2, pp. 301-320, 201310.1080/00423114.2012.725853Search in Google Scholar

[17]. M. DUMITRIU, “Method to synthesize the track vertical irregularities”, Scientific Bulletin of the “Petru Maior” University of Tîrgu Mureş, Vol. 11, No. 2, pp. 17-24, 2014Search in Google Scholar

[18]. ORE B 176, “Bogies with steered or steering wheelsets”, Report No. 1: Specifications and preliminary studies, 1989Search in Google Scholar

[19]. UIC 518 Leaflet, “Testing and approval of railway vehicles from the point of view of their dynamic behaviour – Safety – Track fatigue – Running behaviour”, 2009Search in Google Scholar

[20]. M. DUMITRIU: “Numerical synthesis of the track alignment and applications. Part I: The synthesis method”, Transport Problems, Vol. 11, Issue 1, pp. 19 – 28, 201610.20858/tp.2016.11.1.2Search in Google Scholar

[21]. M. DUMITRIU: “Numerical synthesis of the track alignment and applications. Part II: The simulation of the dynamic behaviour in the railway vehicles”, Transport Problems, Vol. 11, Issue 2, pp. 5 – 16, 201610.20858/tp.2016.11.2.1Search in Google Scholar

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