Top.Mail.Ru

Scientific and technical journal

«Equipment and technologies for oil and gas complex»

ISSN 1999-6934

Development of a safety relief valve actuation sensor "KSP-MPG-25-FT"

UDC: 622.691.4
DOI: -

Authors:

MAGOMEDOV A.M.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: actuation sensor, safety relief valve, precision reed sensor, minimum pressure, valves, gas distribution networks, development, import substitution

Annotation:

The authors of the article consider the development of an original product – a sensor of safety relief valve KSP-MPG-25-FT manufactured by JSC "Mosgaz" within the framework of import substitution. The product is of critical importance in gas distribution facilities, ensuring their safe and stable operation. Based on the analysis of different concepts of actuation sensors used in the industry, the optimal method of actuation fixation was selected. By means of numerical modeling and field tests the minimum pressure of gas medium Pmin = 2 kPa (evident), at which the KSP-MPG-25-FT PSC actuation sensor fixes the PSC actuation, has been verified.

Bibliography:

1. Li K., Korolenok A.M. Polozheniya i trebovaniya po obespecheniyu ekspluatatsionnoy nadezhnosti magistral'nykh gazoprovodov // Tr. RGU nefti i gaza im. I.M. Gubkina. – 2022. – № 1(306). – S. 75–82. – DOI: 10.33285/2073-9028-2022-1(306)-75-82
2. Kontseptsiya optimizatsii obsluzhivaniya gazoprovodov / I.I. Veliyulin, M.Yu. Mitrokhin, V.A. Aleksandrov [i dr.] // Oborudovanie i tekhnologii dlya neftegazovogo kompleksa. – 2023. – № 2(134). – S. 76–79. – DOI: 10.33285/1999-6934-2023-2(134)-76-79
3. 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.
4. Nemchin Yu.V. Informatsionnaya podderzhka resheniy, prinimaemykh organizatsiyami i predpriyatiyami PAO "Gazprom" dlya obespecheniya okhrany okruzhayushchey sredy i ekologicheskoy bezopasnosti ob"ektov neftegazovogo kompleksa // Oborudovanie i tekhnologii dlya neftegazovogo kompleksa. – 2022. – № 3(129). – S. 72–78. – DOI: 10.33285/1999-6934-2022-3(129)-72-78
5. 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.
6. GOST 34011-2024. Sistemy gazoraspredelitel'nye. Punkty gazoregulyatornye blochnye. Punkty redutsirovaniya gaza shkafnye. Obshchie tekhnicheskie trebovaniya. – Vved. 2024–09–01. – M.: Ros. in-t standartizatsii, 2024. – IV, 28 s. – URL: https://docs.cntd.ru/document/1306444510
7. DFMEA: Design Failure Mode and Effects Analysis. – URL: https://safetyculture.com/topics/dfmea-design-failure-mode-and-effects-analysis
8. Ivanov I.P., Chepovskiy A.M. Programmnye sredstva obrabotki rezul'tatov raschetov v inzhenernykh paketakh ANSYS CFX i ABAQUS dlya vysokoproizvoditel'nykh vychislitel'nykh ustanovok. – M.: MGTU im. N.E. Baumana. – 2009. – 189 s.
9. 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
10. Gasangadzhiev G.G., Korolenok A.M. Vliyanie obsluzhivaniya na nadezhnost' sistemy gazosnabzheniya megapolisa // Russkiy inzhener. – 2013. – № 1(36). – S. 37–39.