A REVIEW ANALYSIS OF UNSTEADY FORCES IN HYDRAULIC VALVES
Keywords:
CFD simulation, unsteady flows, directional control valvesAbstract
In the fluid power applications where the typical operating conditions are dynamic the knowledge of the unsteady flow forces that act on the spools of the hydraulic valves represents an important issue to be addressed in order to make a correct design of the valve geometry and its driving system. This paper deals with a rigorous unsteady numerical study of the fluid dynamic behavior of a hydraulic directional control valve. A theoretical approach based upon the application of the momentum equation in the transient fluid dynamic conditions is presented, while a successive numerical analysis is performed by using the commercial Fluent™ code that provided, in the past, a correct evaluation of the stationary flow forces. Unsteady simulations have been carried out considering three different conditions: constant pressure boundary conditions during the spool movement, inlet pressure ripple at a constant spool position, damped pressure oscillations during the spool opening phase. The main objective is to estimate the critical magnitude orders of the pressure ripple frequency and of the axial spool velocity above which the pseudo-steadiness assumption fails; in order to reach this aim, in some cases, the effects of the fluid dynamic phenomena connected with the unsteady flow conditions have been amplified.
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References
Batoli, M. 1996. Analisi teorico-sperimentale delle forze
di flusso in un distributore a comando elettrico,
Oleodinamica e Pneumatica.
Borghi, M., Milani, M. and Paoluzzi, R. 2000. Stationary
axial flow force analysis on compensated
spool valves, International Journal of Fluid Power
No. 1 p.p. 17-25.
Borghi, M., Milani, M. and Paoluzzi, R. 1998. Transient
flow force estimation on the pilot stage of a
hidraulic valve; Proceedings of the ASME-IMECE
FPST, Fluid Power SYSTEMS & Tech, Vol.5 pp.
-162.
Del Vescovo, G. and Lippolis, A. 2002. Flow forces
analysis on a four way valve, Proceedings of 2nd
FPN PhD International Symposium, Modena, Italy.
Del Vescovo, G. and Lippolis, A. 2003. Threedimensional
analysis of flow forces on directional
control valves, International Journal of Fluid
Power, Vol. 4 Number 2.
Del Vescovo, G. and Lippolis, A. 2003. CFD analysis
of flow forces on spool valves, Proceedings of the
st International Conference on Computational
Methods in Fluid Power Technology, Melbourne
November 26-28.
Fluent Inc. 1995. Fluent Europe user’s guide. Vol. 1-4 .
Fluent Inc. 1995. Fluent tutorial guide Vol.1,2 .
Fluent Inc. 2000. Gambit user’s guide.
Fluent Inc. 2000. Gambit Modeling guide.
Huguet, D. 2004. Dynamic mesh of a direct acting relief
valve, Proceedings of the 3rd Fluid Power Net
International PhD Symposium, Terrassa, Spain.
Krishnaswamy, K. and Li, P.Y. 2002. On Using Unstable
Electrohydraulic valves for control; Journal
of dynamic systems, Measurement and control,
March 2002 Vol. 124.
Macor, A. 2002. Analisi sperimentale di un distributore
oleodinamico con sezione ristretta a intaglio piano.
Proccedings of 57° Congresso Nazionale ATI,
Pisa.
Macor, A. and Badin, D. 1999. Influenza dei modelli
di turbolenza nello studio delle forze di flusso nei
distributori oleoidraulici, Proceedings of 54° Congresso
Nazionale ATI, L’Aquila.
Macor, A. and Dato, S. 2000. La riduzione delle forze
di flusso in un distributore oleoidraulico mediante
sagomatura della sezione ristretta, Proceedings of
° Congresso nazionale ATI, Bari-Matera.
Merrit, H. E. 1967. Hydraulic Control Systems, John
Wiley & sons.
Nervegna, N. 2000. Oleodinamica e Pneumatica, Sistemi
- Vol.1., Torino: Politeko.
Yang, R. 2006. Hydraulic oil flow wall shear effect on
valve actuator flow forces, Proceedings of the 2nd
International Conference on Computational Methods
in Fluid Power Technology, Aalborg, Denmark.