Publication Cover
Vehicle System Dynamics
International Journal of Vehicle Mechanics and Mobility
Volume 60, 2022 - Issue 8
310
Views
6
CrossRef citations to date
0
Altmetric
Articles

Experimental analysis of the influence of the passengers on flexural vibrations of railway vehicle carbodies

ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon
Pages 2825-2844 | Received 14 Jul 2020, Accepted 02 May 2021, Published online: 12 May 2021

References

  • Zhou J, Goodall R, Ren L, et al. Influence of car body vertical flexibility on ride quality of passenger railway vehicles. Proc IMechE Part F: J Rail Rapid Transit. 2009;223:461–471.
  • Diana G, Cheli F, Andrea C, et al. The development of a numerical model for railway vehicles comfort assessment through comparison with experimental measurements. Veh Syst Dyn. 2002;38:165–183.
  • Kitazaki S, Griffin M. A modal analysis of whole-body vertical vibration, using a finite element model of the human body. J Sound Vib. 1997;200:83–103.
  • Kitazaki S, Griffin M. Resonance behaviour of the seated human body and effects of posture. J Biomech. 1998;31:143–149.
  • Paddan G, Griffin M. Evaluation of whole-body vibration in vehicles. J Sound Vib. 2002;253:195–213.
  • Rakheja S, Dewangan K, Dong R, et al. Whole-body vibration biodynamics – a critical review: II. Biodyn Model Int J Veh Perform. 2010;6:52–84.
  • Wei L, Griffin M. Mathematical models for the apparent mass of the seated human body exposed to vertical vibration. J Sound Vib. 1998;212:855–874.
  • Matsumoto Y, Griffin M. Dynamic response of the standing human body exposed to vertical vibration: influence of posture and vibration magnitude. J Sound Vib. 1998;212:85–107.
  • Mansfield N, Griffin M. Non-linearities in apparent mass and transmissibility during exposure to whole-body vertical vibration. J Biomech. 2000;33:933–941.
  • Mansfield N, Griffin M. Effects of posture and vibration magnitude on apparent mass and pelvis rotation during exposure to whole-body vertical vibration. J Sound Vib. 2002;253:93–107.
  • Matsumoto Y, Griffin M. Mathematical models for the apparent masses of standing subjects exposed to vertical whole-body vibration. J Sound Vib. 2003;260:431–451.
  • Fairley T, Griffin M. The apparent mass of the seated human body: vertical vibration. J Biomech. 1989;22:81–94.
  • Kaneda T, Kobayashi H, Oda M, et al. Study of human body effect to vibration of railway vehicle body. Proceedings of the 75th annual meetings of JSME Kansai-section, Osaka, 004-1:2.29–2.30; 2000.
  • Nagai M, Yoshida H, Tohtake T, et al. Coupled vibration of passenger and lightweight car-body in consideration of human-body biomechanics. Veh Syst Dyn. 2006;44:601–611.
  • Tomioka T, Takigami T. Experimental and numerical study on the effect due to passengers on flexural vibrations in railway vehicle carbodies. J Sound Vib. 2015;343:1–19.
  • Tomioka T, Takigami T, Aida K. Experimental investigations on the damping effect due to passengers on flexural vibrations of railway vehicle carbody and basics studies on the mimicry of the effect with simple substitutions. Veh Syst Dyn. 2017;55:995–1011.
  • Tomioka T, Takigami T, Akiyama Y. Development of torus-shaped elastic body as a vibration absorber for flexural vibration in railway vehicle carbody and its experimental validation using commuter-type vehicle. Bull JSME Mech Eng J. 2017;4:00467.
  • Gong D, Zhou J, Sun W. On the resonant vibration of flexible railway car body and its suppression with DVS. J Vib Control. 2013;19:649–657.
  • Huang C, Zeng J, Luo G, et al. Numerical and experimental studies on the car body flexible vibration reduction due to the effect of car boy-mounted equipment. Proc IMechE Part F: J Rail Rapid Transit. 2018;232:103–120.
  • Corbridge C, Griffin M. Vibration and comfort: vertical and lateral motion in the range 0.5 to 5.0 Hz. Ergonomics. 1986;29:249–272.
  • Broyde F, Donati P, Galmiche J. Assessing the discomfort of whole-body vibration containing transients: rms or rmq method? United Kingdom informal group meeting on human response to vibration, AFRC Institute of Engineering Research, Silsoe, UK; 1989.
  • Zhou Z, Griffin M. Response of the seated human body to whole-body vertical vibration: discomfort caused by sinusoidal vibration. Ergonomics. 2014;57:714–732.
  • Patelli G, Morioka M, Griffin M. Frequency-dependence of discomfort caused by vibration and mechanical shocks. Ergonomics. 2018;61:1102–1115.
  • Rao S. Vibration of continuous systems. Hoboken, NJ: John Wiley & Sons, Inc.; 2007.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.