Economic efficiency improvement of field pipelines construction by using flexible polymer-reinforced pipelines
UDC: 66.013.512
DOI: -
Authors:
YANGULOV TIMUR N.
1,
SHINKEEVA OLGA A.
1
1 RN-Geology Research Development, Tyumen, Russia
Keywords: flexible reinforced plastic pipes (FRPP), steel pipelines, field pipelines, construction-installation operations, advanced technologies in oil and gas industry, economic efficiency, economic assessment, economic comparison
Annotation:
The authors of the article highlight the problem of surface infrastructure synchronized commissioning against the background of faster drilling rates and accelerated startup of well pads. Due to the fact that the speed of their construction is of key importance in speeding up the commissioning of field pipelines, the replacement of conventional steel pipelines by flexible reinforced plastic pipes (FRPP) is considered as a solution since the installation speed of this type of pipes is significantly higher than the speed of construction and installation of its steel analogues. The advantages and disadvantages of FRPP, their impact on the networks hydraulic modes and the possibility of their use instead of steel pipelines in comparable conditions, production rates and well pads commissioning time have been assessed. The economic comparison of the cost of steel pipelines and FRPP construction as well as the operational costs of pipeline inhibition, is given.
Bibliography:
1. Tolmachev A.A., Ivanov V.A., Mayer A.V. Primenenie polipropilenovykh uteplennykh armirovannykh trub dlya sooruzheniya nefteprovodov v Arktike // Oborudovanie i tekhnologii dlya neftegazovogo kompleksa. – 2022. – № 4(130). – S. 46–51. – DOI: 10.33285/1999-6934-2022-4(130)-46-51
2. Primenenie truboprovodov iz al'ternativnykh materialov na mestorozhdeniyakh OOO "INK". Rezul'taty primeneniya, analiz, perspektivy razvitiya / G.L. Maksimov, V.A. Promakhov, A.V. Fedotova, K.A. Perov // Inzhenernaya praktika. – 2022. – № 3. – S. 46–57.
3. Ivashkin P.B. Perspektivy primeneniya gibkikh trub iz termoplastov, armirovannykh nityami, dlya promyslovykh truboprovodov // Inzhenernaya praktika. – 2020. – № 10. – S. 24–28.
4. SP 536.1325800.2024. Truboprovody promyslovye iz nemetallicheskikh trub. Pravila proektirovaniya i stroitel'stva. – URL: https://www.minstroyrf.gov.ru/docs/371744
5. SP 399.1325800.2018. Sistemy vodosnabzheniya i kanalizatsii naruzhnye iz polimernykh materialov. Pravila proektirovaniya i montazha. – URL: https://www.minstroyrf.gov.ru/docs/17949/
6. GOST 8.586.1-2005. Gosudarstvennaya sistema obespecheniya edinstva izmereniy. Izmerenie raskhoda i kolichestva zhidkostey i gazov s pomoshch'yu standartnykh suzhayushchikh ustroystv. Chast' 1. Printsip metoda izmereniy i obshchie trebovaniya. – Vved. 2007–01–01. – M.: Standartinform, 2007. – V, 43 s. – URL: https://www.smolregiongaz.ru/userfiles/ufiles/gost_8_586_1_2005.pdf
7. Vasil'ev G.G., Kazantseva D.A. Analiz vzaimosvyazi tempov stroitel'nykh rabot s pokazatelyami stoimosti postroennykh ob"ektov // Oborudovanie i tekhnologii dlya neftegazovogo kompleksa. – 2023. – № 4(136). – S. 52–56. – DOI: 10.33285/1999-6934-2023-4(136)-52-56
8. Vasil'ev G.G., Butovka A.N. Sravnitel'nyy analiz prichin otkazov podzemnykh i nadzemnykh truboprovodov // Oborudovanie i tekhnologii dlya neftegazovogo kompleksa. – 2024. – № 2(140). – S. 62–66.