期刊文献+

FINITE ELEMENT ANALYSIS OF A VERTICAL RECTANGULAR PLATE COUPLED WITH AN UNBOUNDED FLUID DOMAIN ON ONE SIDE USING A TRUNCATED FAR BOUNDARY 被引量:2

FINITE ELEMENT ANALYSIS OF A VERTICAL RECTANGULAR PLATE COUPLED WITH AN UNBOUNDED FLUID DOMAIN ON ONE SIDE USING A TRUNCATED FAR BOUNDARY
原文传递
导出
摘要 The dynamic pressure distribution on a rectangular plate attached to a rigid wall and supporting an infinitely large extent of fluid subjected to a harmonic ground excitation is evaluated in the time domain. Governing equations for the fluid domain are set considering the compressibility of the fluid with negligibly small change in density and a linearized free surface. A far boundary condition for the three-dimensional fluid domain is developed so that the far boundary is truncated at a closer proximity to the structure. The coupled problem is solved independently for the structure and the fluid domain by transferring the acceleration of the plate to the fluid and pressure of the fluid to the plate in sequence. Helmholtz equation for the three-dimensional fluid domain and Mindlin's theory for the two-dimensional plate are used for the solution of the interacting domains. Finite element technique is adopted for the solution of this problem with pressure as nodal variable for the fluid domain and displacement for the plate. The time dependent equations are solved in each of the interacting domain using Newmark-fl method. The effectiveness of the technique is demonstrated and the influences of surface wave, exciting frequency and flexibility of the plate on dynamic pressure are investigated. The dynamic pressure distribution on a rectangular plate attached to a rigid wall and supporting an infinitely large extent of fluid subjected to a harmonic ground excitation is evaluated in the time domain. Governing equations for the fluid domain are set considering the compressibility of the fluid with negligibly small change in density and a linearized free surface. A far boundary condition for the three-dimensional fluid domain is developed so that the far boundary is truncated at a closer proximity to the structure. The coupled problem is solved independently for the structure and the fluid domain by transferring the acceleration of the plate to the fluid and pressure of the fluid to the plate in sequence. Helmholtz equation for the three-dimensional fluid domain and Mindlin's theory for the two-dimensional plate are used for the solution of the interacting domains. Finite element technique is adopted for the solution of this problem with pressure as nodal variable for the fluid domain and displacement for the plate. The time dependent equations are solved in each of the interacting domain using Newmark-fl method. The effectiveness of the technique is demonstrated and the influences of surface wave, exciting frequency and flexibility of the plate on dynamic pressure are investigated.
出处 《Journal of Hydrodynamics》 SCIE EI CSCD 2009年第2期190-200,共11页 水动力学研究与进展B辑(英文版)
关键词 fluid-structure interaction compressible fluid linear surface wave truncation boundary dynamic pressure fluid-structure interaction, compressible fluid, linear surface wave, truncation boundary, dynamic pressure
  • 相关文献

参考文献10

  • 1KIM K.C,KIM J.S.The effect of the boundary condition on the added mass of a rectangular plate[].Journal of the Society of Naval Architects of Korea.1978
  • 2AMABILI M,KWAK M.K.Free vibrations of circular plates coupled with liquids:Revising the Lamb problem[].Journal of fluids and structures.1996
  • 3ZHOU D,CHEUNG Y.K.Vibration of vertical rectangular plate in contact with water[].Journal of Earthquake Engineering and Structural Dynamics.2000
  • 4CHEUNG Y.K,JHOU D.Coupled vibratory characteristics of a rectangular container bottom plate[].Journal of Fluids and Structures.2000
  • 5NUGROHO W.S,WANG K.,HOSKING R.J.et al.Time dependent response of a floating flexible plate to an impulsively started steadily moving load[].Journal of Fluid Mechanics.1999
  • 6ABRAHAMS D,WICKHAM G.R.On transient oscillations of plates in moving fluids[].Wave Motion.2001
  • 7RENARD J,LANGLET A,PENNETIER O.Response of a large plate-liquid system to a moving pressure step.Transient and stationary aspects[].Journal of Sound and Vibration.2002
  • 8SHARAN S.K.Finite element modelling of infinite reservoirs[].Journal of Engineering MechanicsASCE.1985
  • 9MAITY D,BHATTACHARYYA S.K.Time-domain analysis of infinite reservoir by finite element method using a novel far boundary condition[].Finite Elements in Analysis and Design.1999
  • 10FAHJAN Y.M,BOREKCI O.S,ERDIK M.Earthquake-induced hydrodynamic pressures on a3D rigid dam-reservoir system using DRBEM and a radiation matrix[].International Journal for Numerical Methods in Engineering.2003

同被引文献1

  • 1R. Narayanan,C. C. Narayanan Final year B. Tech,K. Prabhakaran Nair. Analysis of mass transfer effects on the performance of journal bearings using micropolar lubricant[J] 1995,Heat and Mass Transfer(6):429~433

引证文献2

二级引证文献12

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部