Time redundancy of increasing the reliability of the gas supply and distribution system
UDC: 622.692.12
DOI: -
Authors:
GASANGADZHIEV N.G.
1,
IBRAGIMOV SH.Z.
1,
BUTOROV A.A.
1,
POZDNYSHEVA A.A.
2,
KOROLENOK A.M.
2
1 MOSGAZ, Moscow, Russia
2 National University of Oil and Gas "Gubkin University", Moscow, Russia
Keywords: system, gas supply, gas distribution, reliability, redundancy, reservation, failure
Annotation:
The authors of the article continue developing a methodology of increasing the reliability of complex systems, such as the gas supply and distribution system (GSDS). The types of redundancy (structural, functional, loading) are known and widely used, but the study of systems with information and time redundancy is promising in terms of development and application. How often and what maintenance activities for GSDS servicing should be carried out during operation to ensure their reliable operation is one of the main problems. Reduction of GSDS elements failure after performing a certain type of maintenance work (routine work, checks, diagnostics, etc.) depends on the quality of this work. Therefore, GSDS reliability should be increased, which, in turn, will allow rationally changing the volume and timing of maintenance work for the system. The authors of the article prove the fact that reliable operation of the gas supply and distribution system can be ensured not only by increasing reliability or the volume of units, but also by creating a time reserve and using it to restore the technical characteristics of the system directly during its operation.
Bibliography:
1. Vremennaya izbytochnost' v bezopasnosti sistemy "chelovek – gazosnabzhenie i gazoraspredelenie" / N.G. Gasangadzhiev, Sh.Z. Ibragimov, A.V. Serikov [i dr.] // Truboprovodnyy transport: teoriya i praktika. – 2022. – № 2(82). – S. 51–53.
2. Ul'ko N.I., Korolenok V.A., Miklush A.S. Analiz trebovaniy normativno-tekhnicheskikh dokumentov s ispol'zovaniem otsenok tekhnologicheskogo riska // Territoriya Neftegaz. – 2014. – № 11. – S. 82–85.
3. Korolenok V.A. Sopostavlenie normativnykh trebovaniy k minimal'nym rasstoyaniyam ot magistral'nykh gazoprovodov do promyshlennykh i grazhdanskikh ob"ektov s uchetom tekhnologicheskogo riska // Tr. RGU nefti i gaza (NIU) im. I.M. Gubkina. – 2019. – № 4(297). – S. 112–118. – DOI: 10.33285/2073-9028-2019-4(297)-112-118
4. Rezervirovanie energoresursov dlya obespecheniya nadezhnosti sistemy gazosnabzheniya / K.A. Akulov, G.G. Vasil'ev, A.N. Gul'kov [i dr.]; pod obsh. red. Yu.D. Zemenkova. – Tyumen': TIU, 2006. – 244 s.
5. Promyshlennaya bezopasnost' i nadezhnost' magistral'nykh truboprovodov / V.S. Avanesov, A.B. Aleksandrov, S.A. Aleksandrov [i dr.]; pod red. A.I. Vladimirova, V.Ya. Kershenbauma. – M.: Nats. in-t nefti i gaza, 2009. – 695 s.
6. Gasangadzhiev G.G., Korolenok A.M. Vliyanie obsluzhivaniya na nadezhnost' sistemy gazosnabzheniya megapolisa // Russkiy inzhener. – 2013. – № 1(36). – S. 37–39.
7. Gasangadzhiev G.G., Korolenok A.M. Vremennaya izbytochnost' v sisteme gazosnabzheniya megapolisa // Russkiy inzhener. – 2013. – № 2(37). – S. 43–46.
8. Analiz tekhniko-ekonomicheskikh aspektov diagnostiki i remonta gazoprovodov / I.I. Veliyulin, V.I. Gorodnichenko, V.A. Aleksandrov [i dr.] // Oborudovanie i tekhnologii dlya neftegazovogo kompleksa. – 2022. – № 6(132). – S. 94–98. – DOI: 10.33285/1999-6934-2022-6(132)-94-98
9. Lyapichev D.M., Lopatin A.S. Monitoring tekhnicheskogo sostoyaniya gazoprovodov: ucheb. posobie. – M.: RGU nefti i gaza (NIU) im. I.M. Gubkina, 2021. – 216 s.
10. Obosnovanie korrektnosti vybora osnovnykh razmerov zatvora diskopovorotnogo DN400 PN16 dlya ob"ektov gazoraspredelitel'noy seti / A.A. Barsukov, D.A. Dzhokhaev, A.M. Magomedov [i dr.] // Oborudovanie i tekhnologii dlya neftegazovogo kompleksa. – 2023. – № 3(135). – S. 87–91. – DOI: 10.33285/1999-6934-2023-3(135)-87-91