The transient dynamic analysis of a floating beam-water interaction system excited by the impact of a landing beam


Jin, J.Z. and Xing, J.T. (2007) The transient dynamic analysis of a floating beam-water interaction system excited by the impact of a landing beam Journal of Sound and Vibration, 303, (1-2), pp. 371-390. (doi:10.1016/j.jsv.2007.01.026).

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Description/Abstract

An aircraft, idealized as an elastic beam with supporting system, lands with speed on an aircraft carrier or floating airport. The floating platform is idealized as a flexible beam floating in an infinite water domain. The water is assumed incompressible and inviscid. The surface disturbance satisfies a linear free wave condition and an undisturbed condition at infinity. A mathematical model is developed to describe this complex fluid – structure interactive dynamical system which exhibits strong coupling between the system’s components. An effective numerical scheme is established assuming the two beam – like structures are two solid substructures with motions represented by their respective mode functions and the infinite fluid domain is modelled by a boundary element scheme. A mixed mode function – boundary element method is developed to solve the transient dynamics of the system in terms of the time histories of the beam displacement responses and water pressure. The presented data demonstrates the applicability of the developed mathematical model and numerical approach and some insights of the complex interactive process exhibited by the system.

Item Type: Article
Digital Object Identifier (DOI): doi:10.1016/j.jsv.2007.01.026
ISSNs: 0022-460X (print)
Keywords: fluid – structure interaction, mixed mode function – boundary element method, landing beam, floating beam, aircraft landing impacts, transient dynamics
Subjects:

Organisations: Fluid Structure Interactions Group
ePrint ID: 46009
Date :
Date Event
22 February 2006Submitted
5 June 2007Published
Date Deposited: 16 Jan 2008
Last Modified: 16 Apr 2017 18:39
Further Information:Google Scholar
URI: http://eprints.soton.ac.uk/id/eprint/46009

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