ANALYSIS OF PIPELINE VIBRATION
Abstract
Vibrations occur in almost all energy systems. This article presents an analysis of vibrations in pipe- lines under the influence of fluxes of displaced persons with a pressure difference or with the help of
electromagnetic forces. For this purpose, we analysed pipelines of different diameters and the flow of crude oil within the pipelines.
Downloads
References
V. Singhal, S. Garrimela, A. Raman: Microscale pumping technologies for microchannel cooling systems, Appl. Mech. Rev., Vol. 57: 191‐222, 2015
H. Chen: Vibration of a Pipeline Containing Fluid Flow with Elastic Support, MsC Thesis, Ohio University, 1991
S. Rao: Vibration of continous systems, Wiley, 2007
G. F. Naterer, O. B. Adeyinka: Microfluidic Exergy Loss in a Non‐Polarized Thermomagnetic Field, International Journal of Heat and Mass transfer, Vol. 48: 3945‐3956, 2005
G. D. Ngoma, E. Erchiqui: Heat Flux effects on Liquid Flow in a Microchannel, International Journal of Thermal Sciences, Vol. 46: 1076‐1083, 2007
H. P. Mazumdar, U. N. Ganguly, S. K. Vanketesan: Some Effects on Magnetic Field on the Flow of a Newtonian Fluid through a Circular Tube, Indian J. of Pure Applied Mathematics, 1996, Vol. 27: 519‐524, 1996
http://www.roymech.co.uk/Related/Fluids/Fluids_Viscosities.html
NPTEL: Principles of fluid mechanics, http://nptel.ac.in/courses/101103004/
H. Dodds, H. L. Ruanyan: Effect of high velocity fluid flow on the bending vibrationsnand static divergence of a simply supported pipe, NASA TN D‐2870, 1965
H. Chen: Vibration of a pipeline containing fluid flow with elastic support, Master science thesis, Ohio University, 1991
M. P. Paidoussis, S. J. Price, E. Langre: Fluid structure interactions, Cambridge Press, 2010
R. D. Blevins: Flow‐Induced Vibration, Van Nostrand Reinhold, 1990