A Study on the Nonlinear Behavior of Check Valve System

체크밸브의 비선형거동에 관한 연구

  • 박철희 (인하대학교, 기계공학과) ;
  • 홍성철 (인하대학교, 기계공학과) ;
  • 박용석 (인하대학교, 기계공학과)
  • Published : 1994.06.01

Abstract

This paper deals with the dynamic stability and the nonlinear behavior of a check valve system. The nonlinear equations of motion of fluid-valve interation model are derived, which are composed of the unsteady Bernoulli's equation included the jet flow mechanism and equation of motion of a check valve formulated by one degree of freedom. Also, the derived equations of motion are nondimensionalized. According to the change of the nondimensional parameters, the stabilities of the system are analyzed, and the nonlinear interaction responses of the check valve and the passing flow rate are obtained. As the results, the stability charts are constructed for the variation of nondimensional parameters. It is shown that self-excited vibrations exist in a check valve system. And also the Hopf bifurcation and the periodic doubling are found. The presented theoretical model of a check valve system can be utilized to the design and operation of a piping system with the check valve.

Keywords

References

  1. Journal of Applied Mechanics v.19 Bending Vibrations of a Pipe Line Containing Flowing Fluid Housner,G.W.
  2. Journal of Sound and Vibration v.33 Dynamic Stability of Pipes Conveying Fluid Paidoussis,M.P.;Issid,N.T.
  3. ASCE Journal of the Engineering Mechanics Division v.97 Dynamic Stability of a Tube Conveying Fluid Chen,S.S.
  4. ASME, Journal of Fluids Engineering v.107 The Effect of Elbow Restrainit on Pressure Transients Wiggert,D.C.;Otwell,R.S.;Hatfield,F.J.
  5. Journal of Fluid and Structures v.2 Nonlinear and Chaotic Fluidelastic Vibrations of a Flexible Pipe Conveying Fluid Paidoussis,M.P.;Moon,F.C.
  6. J. of Sound and Vibration, Paper No. P/97/93 Dynamics of Piping System with Internal Unsteady Flow Lee,U.;Pak,C.H.;Hong,S.C.
  7. ASME, J. of Fluids Engineering v.100 Flow Induced Vibrations of a Hydraulic Valve and Their Elimination Weaver,D.S.;Adubi,F.A.;Kouwen,N.
  8. ASME, J. of Pressure Vessel Technology v.102 A Theoretical Model for Self-Excited Vibrations in Hydraulic Gates, Valves and Seals Weaver,D.S.;Ziada,S.
  9. PhD-Thesis, Delft Hydraulics Lab. Publication No. 164 Flow-induced Gate Vibration Kolkman,P.A.