ÌÀÐÕÈ
ËÈ×ÍÛÉ ÊÀÁÈÍÅÒ ÑÒÓÄÅÍÒÀ
ÇÎËÎÒÀß ÌÅÄÀËÜ ÌÀÐÕÈ 2023
ÏÐÎÅÊÒÍÛÅ ÃÐÓÏÏÛ III ÊÓÐÑÀ 2023/2024 ó÷. ã.
ÊÎÍÔÅÐÅÍÖÈÈ 2023-2024
ÊÎÍÊÓÐÑ ÏÏÑ
2024 - ÃÎÄ ÑÅÌÜÈ
Êðàòêîñðî÷íûå ïîäãîòîâèòåëüíûå êóðñû 1.5 ìåñÿöà
ÂÌÅÑÒÅ ÏÐÎÒÈÂ ÊÎÐÐÓÏÖÈÈ
ÔÀÊÓËÜÒÅÒ ÏÎÂÛØÅÍÈß ÊÂÀËÈÔÈÊÀÖÈÈ
ÑÒÀƨРÌèíîáðíàóêè Ðîññèè
ÓÍÈÂÅÐÑÈÒÅÒÑÊÈÅ ÑÓÁÁÎÒÛ
Âñåìèðíûé ôåñòèâàëü ìîëîä¸æè 2024
ÍÀÖÈÎÍÀËÜÍÛÉ ÏÐÎÅÊÒ "Íàóêà è Óíèâåðñèòåòû"
ÇÀÙÈÒÀ ÏÐÀÂ ÍÅÑÎÂÅÐØÅÍÍÎËÅÒÍÈÕ Â ÑÅÒÈ ÈÍÒÅÐÍÅÒ


English version Russian version



INTERNATIONAL SCIENTIFIC AND EDUCATIONAL ONLINE JOURNAL 
ARCHITECTURE AND MODERN INFORMATION TECHNOLOGIES

1(46) 2019


Article ARCHITECTURAL EVOLUTION OF OFFSHORE OIL PRODUCTION INSTALLATIONS
Authors

G. Mudrecova, Moscow Institute of Architecture (State Academy), Moscow, Russia

Abstract The article deals with the evolution of offshore oil production facilities. The following regularities of offshore oil production facilities development are distinguished: evolution and discreteness, similarity of development scenarios in different countries, unification and a limited number of types of offshore facilities. On the basis of the selected regularities, the trends of further development of offshore oil production facilities are determined: the trend of greening; the trend of volume division into objects that depend in their formation on the technological components of production, and objects oriented to humans; the tendency to ensure the autonomy of offshore production facilities; the tendency of the ability of installations to possible changes.
Keywords: offshore oil, offshore oil platform, development patterns, development trends
article Article (RUS)
References

  1. Buzzubcev D.A. Metody i tekhnologii issledovaniya industrial'nogo naslediya (na primere krupnyh dorevolyucionnyh tekstil'nyh fabrik na territorii sovremennoj Moskovskoj oblasti) [Methods and technologies for the study of industrial heritage (on the example of large pre-revolutionary textile factories on the territory of the modern Moscow region)]. Moscow, MGU im. M.V. Lomonosova, 2013.
  2. Vershinin V.I. EHvolyuciya arhitektury promyshlennyh zdanij [The evolution of industrial buildings architecture]. Moscow, Arhitektura-S, 2007, 176 p.
  3. Ikonnikov A.V. Arhitektura budushchego – tendencii i prognozy [Architecture of the future - trends and forecasts]. Arhitektura i materialy budushchego: materialy soveshch. Moscow, SA SSSR, 1982, pp. 44-52.
  4. Kasatkin R.G. Perspektivy razvitiya shel'fovyh mestorozhdenij nefti i gaza v mire [Prospects for the development of offshore oil and gas fields in the world. Rossijskij vneshneehkonomicheskij vestnik]. 2008, no. 1, pp. 57-61.
  5. Korshak A.A., SHammazov A.M. Osnovy neftegazovogo dela [Basics of oil and gas business]. Ufa, 2002, 544 p.
  6. Mirzoev D.A. Osnovy morskogo neftegazopromyslovogo dela [Basics of offshore oil and gas business]. Moscow, 2014, 272 p.
  7. Movsumzade Eh. M. Morskaya neft. Razvitie tekhnicheskih sredstv i tekhnologij [Sea oil. Development of technical means and technology]. St. Petersburg, 2005, 240 p.
  8. Morozova E.B. Arhitektura promyshlennyh ob"ektov: proshloe, nastoyashchee i budushchee [Industrial Object Architecture: Past, Present, and Future]. Moscow, UP «Tekhnoprint», 2003, 316 p.
  9. Morozova E.B. Promyshlennaya arhitektura vo vremeni i prostranstve [Industrial architecture in time and space. Gradostroitel'stvo. Arhitektura i stroitel'stvo]. 2010, no. 7(218). Available at: https://ais.by/story/12128
  10. Morozova E.B. Sovremennye tendencii razvitiya promyshlennoj arhitektury [Modern trends in the development of industrial architecture. Vestnik Belorusskogo nacional'nogo tekhnicheskogo universiteta : nauchno-tekhnicheskij zhurnal]. 2007, no. 1, pp. 5-10.
  11. Mudrecova G.G. EHkologicheskie problemy morskoj dobychi nefti i puti ih resheniya [Environmental problems of offshore oil production and solutions. EHkologiya promyshlennogo proizvodstva]. 2017, no. 4, pp. 66-71.
  12. Oganov G.S. Analiz avarijnyh rozlivov nefti i nefteproduktov na kontinental'nom shel'fe i usilenie vzaimodejstviya po bor'be s nimi [Analysis of emergency spills of oil and oil products on the continental shelf and increased interaction to combat them. Nauchno-tekhnicheskij zhurnal. Stroitel'stvo neftyanyh i gazovyh skvazhin na sushe i na more]. 2018, no. 12, pp. 60-66.
  13. Sochneva I.O. Pervye sovetskie morskie skvazhiny v Arktike [The first Soviet offshore wells in the Arctic. Nauchno-tekhnicheskij zhurnal. Stroitel'stvo neftyanyh i gazovyh skvazhin na sushe i na more]. 2018, no. 9, pp. 55-62.
  14. Yagafarova G.G. Ehkologicheskie aspekty pri stroitel'stve skvazhin na sushe i more [Environmental aspects in the construction of wells on land and sea]. Ufa, Oil and gas business, 2014, 111 p.
  15. Yakovlev A.A. Arhitekturnaya adaptaciya industrial'nogo naslediya k novoj funkcii [Architectural adaptation of industrial heritage to the new function (Cand. Dis)]. Nizhnij Novgorod, 2014.
  16. Patent RF ¹ 2654336. Denislamov I.Z., Ponomarev A.I. Sposob opredeleniya mestopolozheniya i razmerov neftyanogo pyatna pri avarijnoj utechke nefti [The method of determining the location and size of the oil slick in case of emergency leakage of oil]. Available at: http://www.findpatent.ru/patent/265/2654936.html

For citation

Mudrecova G. Architectural Evolution of Offshore Oil Production Installations. Architecture and Modern Information Technologies, 2019, no. 1(46), pp. 191-208. Available at: http://marhi.ru/eng/AMIT/2019/1kvart19/14_mudrecova/index.php