Calculation of hydrodynamic noise in the diffuser of a pulsation damper flow channel
- Authors: Makaryants G.M.1, Gafurov S.A.1, Zubrilin I.A.1, Kryuchkov A.N.1, Shakhmatov Y.V.1, Berestovitsky E.G.2, Gladilin Y.A.3
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Affiliations:
- Samara State Aerospace University
- Concern AVRORA Scientific and Production Association Join Stock Company
- JSC "Concern" NPO "Aurora"
- Issue: Vol 13, No 1 (2014)
- Pages: 131-143
- Section: MECHANICAL ENGINEERING AND POWER ENGINEERING
- URL: https://journals.ssau.ru/vestnik/article/view/1705
- DOI: https://doi.org/10.18287/1998-6629-2014-0-1(43)-131-143
- ID: 1705
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Abstract
This article deals with the problem of hydrodynamic noise inside a fluid pressure vibration absorber. The calculation of hydrodynamic noise is based on the results of numerical simulation of fluid flow in the central duct of the vibration absorber. A complete system of hydrodynamics equations is solved with the help of a large eddy simulation turbulence model (LES).
About the authors
G. M. Makaryants
Samara State Aerospace University
Author for correspondence.
Email: georgy.makaryants@gmail.com
Candidate of Science (Engineering), Associate Professor
Department of Automatic Systems of Power Plants
Russian FederationS. A. Gafurov
Samara State Aerospace University
Email: sa.gafurov@gmail.com
Assistant
Department of Automatic Systems of Power Plants
Russian FederationI. A. Zubrilin
Samara State Aerospace University
Email: zubrilin416@mail.ru
Postgraduate student
Department of Heat Engineering and Heat Engines
Russian FederationA. N. Kryuchkov
Samara State Aerospace University
Email: kan@ssau.ru
Doctor of Science (Engineering), Professor
Department of Automatic Systems of Power Plants
Russian FederationYe. V. Shakhmatov
Samara State Aerospace University
Email: shakhm@ssau.ru
Doctor of Science (Engineering), Professor
Head of the Department of Power Unit Control Systems
Russian FederationE. G. Berestovitsky
Concern AVRORA Scientific and Production Association Join Stock Company
Email: berest40@mail.ru
Doctor of Science (Engineering)
Senior Researcher, Chief Expert in Acoustics, Head of Laboratory, Centre of Design and Testing of Electrohydraulic Equipment
Russian FederationYu. A. Gladilin
JSC "Concern" NPO "Aurora"
Email: gladilin_01@mail.ru
Candidate of Science (Engineering), Associate Professor
Specialist in Noise and Vibration
Russian FederationReferences
- Bezyasychny V.V., Popkov V.I. Application of energy methods for localization of sources and determination of vibration-isolating efficiency of three-dimensional system, International congress on intensity techniques. CETIM. – Senlis (France), 1990. P. 411-416.
- Garnovskii N.N. Teoreticheskie osnovy elektroprovodnoy svyazi [Theoretical foundations of conductive connection]. Part 1. Moscow: Svyaz'izdat Publ., 1956. 390 p.
- Kim J.A., Budrin S.V., Selezskij A.I. Effect of the installation location in pipelines of soundproof facilities on their efficiency // Voprosy sudostroeniya. Ser. SJeU. 1981. P. 71-76. (In Russ.)
- Nikiforov A.S., Ryleeva T.V. Designs of flow noise // Voprosy sudostroeniya. Ser. “Proektirovanie korabley”. 1978. V. 15. P. 71-76. (In Russ.)
- Igolkin A.A., Kryuchkov A.N., Makaryants G.M., Prokofiev, A.B., Prokhorov S.P., Shakhmatov E.V., Shorin V.P. Snizhenie kolebaniy i shuma v pnevmogidromekhanicheskikh sistemakh [Reducing vibrations and noise in pneumo/hydraulic/mechanical systems]. Samara: SNC RAN Publ., 2005. 314 p.
- Shorin V.P. Ustranenie kolebaniy v aviatsionnykh truboprovodakh [Elimination of fluctuations in aviation pipelines]. Moscow: Mashinostroenie Publ., 1980. 156 p.
- Shorin V.P., Gimadiev A.G., Shakhmatov E.V. Designing dampers for hydraulic circuits control systems // Izv. AN SSSR. Energetika i transport. 1987. No 4. P. 127-133. (In Russ.)
- Shorin V.P., Gimadiev A.G., Shakhmatov E.V. Designing oscillation dampers for damping pressure pulsations in gas turbine engine control systems // Izv. VUZzov. Mashinostroenie. 1982. No 7. P. 65-68. (In Russ.)
- Golovin A.N., Brudkov L.I., Shorin V.P. Calculation of own characteristics of oscillation dampers for working fluid of the type of an acoustic low-pass filter //Vibratsionnaya prochnost i nadezhnost dvigateley i sistem letatelnykh apparatov. 1980. No 7. P. 36-43. (In Russ.)
- Golovin A.N. Transformer of active shock wave drug // Vestnik Samarskogo gosudarstvennogo aerokosmicheskogo universiteta im. akademika S.P. Koroleva. 2003. V. 2. P. 336-342. (In Russ.)
- Shorin V.P., Sanchugov V.I. Designing oscillation dampers for hydraulic circuits of control systems //Izv. AN SSSR. Energetika i transport. 1978. No 2. P. 132-139. (In Russ.)
- Golovin A.N., Shestakov G.V. The structure of automated calculation of the pressure oscillation dampers // Dinamicheskie protsessy v silovykh i energeticheskikh ustanovkakh letatel'nykh apparatov. 1988. P. 20-25. (In Russ.)
- Bochkaryov S.K., Makaryantz G.M., Prokofiev A.B., Shakhmatov E.V. Modelling characteristics of pressure oscillation dampers with regard for the distribution of their parameters // Vestnik Samarskogo gosudarstvennogo aerokosmicheskogo universiteta im. akademika S.P. Koroleva. 2007. No. 1(17). P. 148-155. (In Russ.)
- Belov G.O., Golovin A.N., Kruchkov A.N., Rodionov L.V., Shakhmatov E.V. Reaserching the processes of excitement and suppressions flow pulsation and dynamic noise in hydraulic systems // Izv. SNC RAN. 2011. V. 13, no 4. P. 178-184. (In Russ.)
- Berestovitsky Je.G., Gladilin Yu.A., Kryuchkov A.N., Fyodorov A.Ye., Frantov A.A., ShakhmatovYe.V. Pressure pulsation dampers as a means of improving the inherent vibroacoustic charateristics of hydraulic test rigs // Vestnik Samarskogo gosudarstvennogo aerokosmicheskogo universiteta im. akademika S.P. Koroleva (nacional'nogo issledovatel'skogo universiteta). 2012. No. 2(33). P. 149-154. (In Russ.)
- Shakhmatov E.V., Kryuchkov A.N., Prokofiev A.B., Golovin A.N., Belov G.O. Using of pressure fluctuations absorber to reduce vibroacoustic loading of hydromechanical systems // Sudostroenie. 2011. No. 3. P. 45-47. (In Russ.)
- Igolkin A., Koh A., Kryuchkov A., Safin A., Shakhmatov, E. Pressure reducing valve noise reduction // 19th International Congress on Sound and Vibration 2012, ICSV 2012. P. 2458.
- Smol'yakov A.V. Shum turbulentnykh potokov [Noise in turbulent flows]. St. Petersburg: CNII im. akad. A.N. Krylova, 2005. 312 p.
- Smol'yakov A.V. Acoustic radiation intensity in a turbulent boundary layer on a plate // Acoustical Physics. 1973. V. 19, no. 2. P. 251-276.
- Smol'yakov A.V. Spectrum of quadruple radiation of a plane turbulent boundary layer // Acoustical Physics. 1973. V. 19, no. 3. P. 420-425.
- Smol'yakov A.V. A new model for the cross spectrum and wavenumber-frequency spectrum of turbulent pressure fluctuations in a boundary layer // Acoustical Physics. 2006. V. 52, no. 3. P.393-400. doi: 10.1134/S1063771006030146
- Kibicho K., Sayers A.T. Benchmark experimental data for fully stalled wide-angled diffusers // Journal of Fluids Engineering, Transactions of the ASME. 2008. V. 130, no. 10. Art. No. 104502 (4 p.) doi: 10.1115/1.2969270
- Kibicho K., Sayers A.T. Experimental measurements of the mean flow field in wide-angled diffusers: adata bank contribution // International Journal of Engineering and Applied Sciences. 2009. 5:8. P. 487-492.
- Keerthana R., Jamuna Rani G. Flow analysis of annular diffusers // International Journal of Engineering Research and Applications (IJERA). 2012. V. 2, is. 3. P.2348–2351.
- Vujičić M., Crnojević C. Calculation of the separation point for the turbulent flow in plane diffusers // Mechanics, Automatic Control and Robotics. 2003. V. 3, no.15. P. 1001–1006.
- Iaccarino G.Prediction of the turbulent flow in a diffuser with commercial CFD codes //Center for Turbulence Research Annual Research Briefs. 2000. P. 271–278.
- Prakash R., Mahalakshmi N.V. Experimental investigations of flow through annular diffuser with and without struts // European Journal of Scientific Research. 2011. V. 52, no. 3. P. 366–384.
- Gravemeier V. Variational multiscale large eddy simulation of turbulent flow in a diffuser // Computational Mechanics. 2007. V. 39, is. 4. P. 477–495. doi: 10.1007/s00466-006-0044-y
- Sparrow E.M., Abraham J.P., Minkowycz W.J. Flow separation in a diverging conical duct: Effect of Reynolds number and divergence angle //International Journal of Heat and Mass Transfer. 2009. V. 52, is. 13-14. P. 3079–3083. doi: 10.1016/j.ijheatmasstransfer.2009.02.010
- Sagar D., Paul A.R., Jain A. Experimental investigations of flow computational fluid dynamics investigation of turbulent separated flows in axisymmetric diffusers //International Journal of Engineering, Science and Technology. 2011. V. 3, no.2. P. 104–109.
- Nicoud F., Ducros F. Subgrid-Scale Stress Modelling Based on the square of the velocity gradient tensor // Flow, Turbulence, and Combustion. 1999. V. 62, no.3. P. 183–200. doi: 10.1023/A:1009995426001
- Pope S.B. Turbulent flows. Cambridge: Cambridge Univ. Press, 2000. 771 p.
- Monin A.S., Jaglom A.M. Statisticheskaya gidromekhanika. Teoriya turbulentnosti. T. 1. Teoriya turbulentnosti [Statistical fluid mechanics. Theory of turbulence. V. 1. Theory of turbulence]. St. Petersburg: Gidrometeoizdat Publ., 1992. 694 p.
- Schlichting H. Boundary layer theory, 7th Edition, 1979.