Smart Search 



Title of the article

СRITICAL SPEED NUMERICAL DETERMINATION FOR ARBITRARY TUBE BUNDLE IN FLUID FLOW

Authors

KAPLUNOV Saveliy M., D. Sc. in Eng., Prof., Laboratory Chief, Mechanical Engineering Research Institute of the Russian Academy of Sciences, Moscow, Russia, This email address is being protected from spambots. You need JavaScript enabled to view it.">This email address is being protected from spambots. You need JavaScript enabled to view it.

VALLES Natalya G., Ph. D. in Eng., Senior Researcher, Mechanical Engineering Research Institute of the Russian Academy of Sciences, Moscow, Russia, This email address is being protected from spambots. You need JavaScript enabled to view it.">This email address is being protected from spambots. You need JavaScript enabled to view it.

DRONOVA Elena A., Researcher, Mechanical Engineering Research Institute of the Russian Academy of Sciences, Moscow, Russia, This email address is being protected from spambots. You need JavaScript enabled to view it.">This email address is being protected from spambots. You need JavaScript enabled to view it.

SAMOLYSOV Alexey V., Postgraduate Student, Mechanical Engineering Research Institute of the Russian Academy of Sciences, Moscow, Russia, This email address is being protected from spambots. You need JavaScript enabled to view it.">This email address is being protected from spambots. You need JavaScript enabled to view it.

In the section ACADEMIC SCIENCE
Year 2017 Issue 3 Pages 41-46
Type of article RAR Index UDK 621.039 Index BBK  
Abstract

On the basis of the analysis results of experimental behavior of tube bundles under separated flow, the mathematical model for hydroelastic vibration excitation mechanism of tube bundle was developed. The problem of the onset of hydroelastic excitation of a tube bundle reduces to the development of an instability of the unperturbed state of elastic tubes. On the basis of a theoretical study of the mathematical model, a necessary and sufficient condition for the stability of the tube bundle, expressed through the dimensionless parameters of the system, was obtained. Two numerical vortex calculation methods are used in this paper: the method of discrete vortices and the method of viscous vortex domains. The aim of the study: developing methods for flow velocity unacceptable values and tube heat exchangers operational safety determination.

Keywords

separated flow, mathematical model, hydroelastic excitation, vortex methods, viscous vortex domains method, stability criteria

   You can access full text version of the article
Bibliography
  • Connors G.I. Gidrouprugie vibracii puchkov trub teploobmennikov [Tube bundles of heat exchangers hydro-elastic vibration]. Trudy Amerikanskogo obshhestva inzhenerov – mehanikov. Konstruirovanie i tehnologija mashinostroenija [Transactions of the ASME. Engineering and technology of engineering], vol. 100, no. 2, pp. 95–102.
  • Price S., Paidoussis M. Analiz dvizhenija odinochnogo uprugogo cilindra dlja issledovanija gidrouprugoj neustojchivosti puchka uprugih cilindrov v poperechnom potoke zhidkosti [Motion of a single elastic cylinder for study of hydroelastic instability of elastic cylinders bundle in cross flow analysis]. Trudy Amerikanskogo obshhestva inzhenerov – mehanikov. Teoreticheskie osnovy inzhenernyh raschetov [Transactions of the ASME. Theoretical bases of engineering calculations.], 1986,
    no. 2, pp. 271–283.
  • Chen S.S., Jendrzejczyk J.A. Experiment and Analysis of Instability of Tube Rows Subject to Liquid Cross Flow. ASME. Journal of Applied Mechanics, 1982, vol. 104, pp. 704–709.
  • Tanaka H., Takahara S. Fluidelastic Vibration of Tube Array in Cross Flow. Journal of Sound and Vibration, 1981, vol. 77, pp. 19–37.
  • Praiss S., Paidussis M. Gidrouprugaja neustojchivost dvojnogo rjada kruglyh cilindrov beskonechnoj dliny pri vozdejstvii odnorodnogo poperechnogo potoka [Double row of circular cylinders of infinite length under the influence of cross flow hydroelastic instability]. Trudy Amerikanskogo obshhestva inzhenerov – mehanikov. Konstruirovanie i tehnologija mashinostroenija [Transactions of the ASME. Journal of engineening for industry], 1983, vol. 105, no. 1, pp. 25–33.
  • Kaplunov S.M., Valles N.G., Samolysov A.V., Marchevskaya O.A. Opredeleniye kriticheskikh parametrov obtekaniya puchka trub metodom chislennogo experimenta [Сritical flow over the tube bundle parameters determination applying method of numerical experiment]. Teploenergetika [Heatpower engineering], 2015, no. 8, pp. 57–62.
  • Kotovskiy V.N., Nisht M.I., Fedorov V.M. Chislennoye issledovaniye regimov otrivnogo obtekaniya reshetok profiley I kolebluschegosya cilindra [Numerical study of lattices profiles and oscillating cylinder separated flow]. Aerouprugost turbomashin [Turbomachines aeroelasticity], Institut gidrodinamiky SO AN SSSR, 1984, pp. 6–23.
  • Samolysov A.V., Masevich A.V. Valles N.G. Primeneniye metoda diskretnikch vichrey dlya rascheta srivnogo obtekaniya odno- i dvukchkomponentnikch konstrukciy [Discrete vortices method application for calculation of separated flow around single and two-component structures]. Problemy mashinosteoeniya i avtomatizatcii [Problems of mechanical engineering and automation], 2013, pp. 42–45.
  • Ivanova O.A. Chislennoye modelirovaniye dvigeniya provoda LEP pod deystviyem vetra [Numerical simulation of power lines movement under the wind influence]. Vestnik MGTU im. Baumana. Ser. Yestestvenniye nayki “Matematicheskoye modelirovaniye v tekhnike” [Herald of the Bauman Moscow State Technical University. Series Natural science. “Mathematical modeling in engineering”], 2012, no. 2, pp. 67–74.
  • Samolysov A.V., Masevich A.V., Valles N.G. Raschet vikchrevogo ovtekaniya nepodvignikch i kolebluschihsya cilindricheskikch tel metodom diskretnikch vikchrey [Vortex flow around stationary and oscillating cylindrical bodies calculation by discrete vortices method]. Vestnik nauchnotekhnicheskogo rasvitiya [Bulletin of scientific-technical development], 2014, no. 6, pp. 31–37.
  • Lyapunov A.M. Obschaya zadacha ob ustoichivosty dvigeniya [General problem of motion stability]. Moscow–Leningrad, Gostekchizdat, 1950. 472 p.