Engineering Journal: Science and InnovationELECTRONIC SCIENCE AND ENGINEERING PUBLICATION
Certificate of Registration Media number Эл #ФС77-53688 of 17 April 2013. ISSN 2308-6033. DOI 10.18698/2308-6033
  • Русский
  • Английский
Article

Special features of pressure changes in the pipeline at its closing

Published: 05.03.2014

Authors: Bondarenko N.I., Terentiev Yu.I.

Published in issue: #1(25)/2014

DOI: 10.18698/2308-6033-2014-1-1176

Category: Engineering Sciences | Chapter: Theoretical Mechanics. Design of mechanisms and machines

The paper considers unsteady motion of ап idea/ compressible fluid in а homogeneous elastic tube, caused by the activation of the cut-off device. The stable difference scheme is used for solving the equations of motion and continuity of flow. The authors demonstrate the application of the scheme on a single-stranded pipeline in case of reducing the mass flow rate to zero for a given linear law. In the particular case it was found possible to stop pressure fluctuations of the fluid in the pipeline when it was fully closed. Generally, at any time of activation of the cut-off device, pressure changes in two possible ways, which are presented as two generalized graphic dependences.


References
[1] Gladkiy V.F. Dinamika konstruktsiy letatel’nogo apparata [Dynamics of the aircraft structure]. Moscow, Nauka Publ., 1969, 496 p.
[2] Berzheron L. Ot gidravlicheskogo udara v trubakh do razriada v elektrich-eskoy seti [From hydraulic shock in the pipes to discharge in the mains]. Moscow, Mashgiz Publ., 1962, 348 p.
[3] Zhmud' A.E. Gidravlicheskiy udar v gidroturbinnykh ustanovkakh. Elementy teorii i raschet [Hydraulic shock in hydraulic turbine plants. Elements of the theory and calculation]. Moscow, Gosenergoizdat Publ., 1953, 230 p.
[4] Zhukovsky N.E. O gidravlicheskom udare v trubakh. Poln. sobr. soch [On hydraulic shock in the pipes. Complete set of works], vol. VII. Moscow, State National Research Institute, 1937, 410 p.
[5] Kolesnikov K.S. Prodol’nye kolebaniya raket s zhidkostnym raketnym dvigatelem [Longitudinal oscillations of missiles with liquid rocket engine]. Moscow, Mashinostroenie Publ., 1971, 260 p.
[6] Kolesnikov K.S., Dzhikaev B.L. Energetika i transport - Energy and Transport, 1975, no.1, pp. 174-176.
[7] Kolesnikov K.S., Rybak S.A., Samoilov E.A. Dinamika toplivnykh sistem ZhRD [Dynamics of fuel systems of liquid rocket engines]. Moscow, Mashinostroenie Publ., 1975, 172 p.
[8] Natanzon M.S. Prodol’nye avtokolebaniya zhidkostnoi rakety [Longitudinal oscillations of a liquid rocket]. Moscow, Mashinostroenie Publ., 1977, 208 p.
[9] Popov D.N., Orlov A.E. Izv. vuzov. Mashinostroenie - Universities proceedings. Engineering, 1988, no. 4, pp. 60-63.
[10] Popov D.N., Panaiotti S.S., Ryabinkin M.V. Gidromekhanika [Hydromechanics]. Moscow, Bauman Moscow State Technical University Publ., 2002, 384 p.
[11] Charnyi I.A. Neustanovivsheesya dvizhenie real’noi zhidkosti v trubakh [Unsteady motion of real fluid in pipes]. Moscow, Nedra Publ., 1975, 296 p.
[12] Samarskiy A.A., Popov Yu.P. Raznostnye metody resheniya zadach gazovoi dinamiki [Difference methods for solving problems of gas dynamics]. Moscow, Editorial URSS Publ., 2004, 424 p.
[13] Bondarenko N.I., Terent'ev Yu.I. Inzhenernyi zhurnal: nauka i innovatzii - Engineering Journal: Science and Innovation, 2012, no. 7. URL: http://engjournal.ru/catalog/eng/teormech/289.html