Preview

Oil and Gas Studies

Advanced search

Determination of the natural frequencies of the above-ground sections of pipelines transporting an incompressible fluid

https://doi.org/10.31660/0445-0108-2023-3-84-94

Abstract

Under certain conditions, above-ground sections of pipelines are subject to vibration. Increasing the vibration amplitudes beyond the limits can cause the object to fail. In order to assess the vibration resistance of pipelines and to find the most effective ways of detuning from the resonant frequencies of disturbances, it is necessary to determine the natural frequencies of oscillations and the characteristics of the oscillation processes. The authors of the article developed a mathematical model to determine the frequency of free vibrations of above-ground pipeline sections, taking into account the influence of internal pressure and the velocity of the pumped fluid. As a result, a numerical solution based on the Bubnov-Galerkin method was obtained and a sufficient number of series elements in the approximate solution was determined. The authors performed numerical experiments. These showed that the frequencies should be determined for each section under specific conditions according to the pumping mode.

About the Authors

D. A. Cherentsov
Industrial University of Tyumen
Russian Federation

Dmitry A. Cherentsov, Candidate of Engineering, Associate Professor at the Department of Transportation of Hydrocarbon Resources

Tyumen



S. P. Pirogov
Industrial University of Tyumen
Russian Federation

Sergey P. Pirogov, Doctor of Engineering, Professor at the Department of Applied Mechanics

Tyumen



References

1. Feodos'ev, V. I. (1951). O kolebaniyakh i ustoychivosti truby pri protekanii cherez nee zhidkosti. Inzhenernyy sbornik. Tom 10. Moscow, AN SSSR Publ., pp. 169-170. (In Russian).

2. Efimov, A. A. (2008). Svobodnye kolebaniya podvodnykh nefteprovodov. Izvestiya vysshikh uchebnykh zavedeniy. Neft' i gaz, (1(67)), pp. 49-55. (In Russian).

3. Il'in, V. P., & Sokolov, V. G. (2010). Issledovanie svobodnykh kolebaniy krivoy truby s potokom zhidkosti. Uspekhi stroitel'noy mekhaniki i teorii sooruzheniy: sbornik nauchnykh statey: k 75-letiyu so dnya rozhdeniya V. V. Petrova. Saratov, Saratov State Technical University Publ., pp. 88-93. (In Russian).

4. Sokolov, V. G., & Bereznev, A. V. (2004). Uravneniya dvizheniya krivolineynogo uchastka truboprovoda s potokom zhidkosti. Izvestiya vysshikh uchebnykh zavedeniy. Neft' i gaz, (6), pp. 76-80. (In Russian).

5. Sokolov, V. G., & Bereznev, A. V. (2005). Reshenie zadachi o svobodnykh kolebaniyakh krivolineynykh uchastkov truboprovodov s protekayushchey zhidkost'yu. Izvestiya vysshikh uchebnykh zavedeniy. Neft' i gaz, (1(49)), pp. 80-84. (In Russian).

6. Zaripov, D. M. (2016). Nelineynye kolebaniya truboprovoda pod deystviem vnutrennego udarnogo davleniya zhidkosti. Trudy Instituta mekhaniki Ufimskogo nauchnogo tsentra RAN. Vyp. 11. Ufa, Gilem Publ., pp. 136-140. (In Russian).

7. Mironov, M. A., Pyatakov, P. A., & Andreev, A. A. (2010). Forced flexural vibrations of a pipe with a liquid flow. Acoustical Physics, 56(5), pp. 739-747. (In English).

8. Shakiryanov, M. M. (2016). Spatial chaotic vibrations of a pipeline in the continuous medium under the impact of alternating internal pressure. Izvestiya Ufimskogo nauchnogo tsentra RAN, (4), рр. 35-47. (In Russian).

9. Ganiev, R. F., Il’gamov, M. A., Khakimov, A. G., & Shakiryanov, M. M. (2017). Spatial aperiodic vibrations of the pipelines under transient internal pressure. Journal of Machinery Manufacture and Reliability, 46(2), pp. 87-95. (In English).

10. Cherentsov, D. A., Pirogov, S. P., & Dorofeyev, S. M. (2014). Mathematical model of manometric spring in a viscous medium. Tyumen State University Herald. Physical and Mathematical Modeling. Oil, Gas, Energy, (7), pp. 234-241. (In Russian).

11. Chuba, A. Yu., Smolin, N. I., & Pirogov, S. P. (2007). Opredelenie sobstvennykh chastot kolebaniy izognutykh trub nekrugovogo poperechnogo secheniya. Izvestiya vysshikh uchebnykh zavedeniy. Neft' i gaz, (1(61)), pp. 77-82. (In Russian).

12. Pirogov, S. P., Cherentsov, D. A., & Voronin, K. S. (2019). Uravneniya matematicheskoy fiziki v zadachakh truboprovodnogo transporta nefti i gaza. Tyumen, Industrial University of Tyumen Publ., 96 p. (In Russian).

13. Rabinovich, E. Z. (1974). Gidravlika. Moscow, Nedra Publ., 296 p. (In Russian).


Review

For citations:


Cherentsov D.A., Pirogov S.P. Determination of the natural frequencies of the above-ground sections of pipelines transporting an incompressible fluid. Oil and Gas Studies. 2023;(3):84-94. (In Russ.) https://doi.org/10.31660/0445-0108-2023-3-84-94

Views: 309


ISSN 0445-0108 (Print)