Top.Mail.Ru

Научно-технический журнал

«Onshore and offshore oil and gas well construction»

ISSN 0130-3872

Onshore and offshore oil and gas well construction
On the issue of studying a vibration device to prevent sticking during the construction of oil and gas wells

UDC: 622.242.001.24
DOI: -

Authors:

KHUZINA LILIYA B.1,
SHAIKHUTDINOVA ALIYA F.1,
KYAZIMOV ELCHIN A.2

1 Almetyevsk State Petroleum Institute, Almetyevsk, Russia
2 NIPI "Neftegaz" of the State Oil Company of the Azerbaijan Republic, Baku, Azerbaijan

Keywords: well drilling, horizontal section, sticking, load on bit, device, vibration, friction

Annotation:

The drilling process is one of the most expensive stages of oil wells construction. Therefore, methods that allow reducing drilling costs without worsening the quality of a well construction are always in demand by oil workers. As a rule, well drilling specialists strive to increase the rate of penetration, reduce the number of tripping operations, eliminate accidents due to tool failures, ensure uniform loading per a bit, reduce the time spent on eliminating complications, etc. Among the listed approaches, the technology of usingvibration devices to prevent a drill stringsticking occupies a special place. The authors of the article provide theoretical studies of the operation of a device for dynamic impact on the well face, allowing one to evaluate the influence of design factors on its operation. The performed studies allow the authors to recommend the use of the device in a single downhole assembly to create pulsating flushing and dynamic loading of the bit. The obtained research results can be used in the design of downhole assemblies of various sizes with hydraulic vibrators for drilling wells.

Bibliography:

1. Tekhnologicheskie resheniya po povysheniyu effektivnosti protsessa stroitel'stva skvazhin v PAO "Tatneft'" / A.S. Pitirimov, V.A. Kurinov, T.I. Sayfullin [i dr.] // Str-vo neftyanykh i gazovykh skvazhin na sushe i na more. – 2021. – № 8(344). – S. 5–10. – DOI: 10.33285/0130-3872-2021-8(344)-5-10
2. Shmelev V.A. Upravlenie protsessom bureniya neftyanykh i gazovykh skvazhin s tsel'yu povysheniya ego effektivnosti // Str-vo neftyanykh i gazovykh skvazhin na sushe i na more. – 2022. – № 6(354). – S. 5–12. – DOI: 10.33285/0130-3872-2022-6(354)-5-12
3. Granov A.P. Povyshenie pokazateley mekhanicheskogo bureniya skvazhin na osnove avtomatizatsii bureniya i ostsillyatsii verkhnego silovogo privoda // Str-vo neftyanykh i gazovykh skvazhin na sushe i na more. – 2022. – № 8(356). – S. 18–24. – DOI: 10.33285/0130-3872-2022-8(356)-18-24
4. Shcherbakov A.V., Babushkin E.V., Kuznetsov V.G. Opyt proektirovaniya skvazhin slozhnoy prostranstvennoy konfiguratsii // Str-vo neftyanykh i gazovykh skvazhin na sushe i na more. – 2020. – № 2(326). – S. 5–9. – DOI: 10.33285/0130-3872-2020-2(326)-5-9
5. Zeynalov R.M., Guseynli O.B., Kyazimov E.A. Primenenie innovatsionnykh i naukoemkikh tekhnologiy dlya povysheniya effektivnosti i bezopasnosti bureniya neftegazovykh skvazhin v Azerbaydzhane // Str-vo neftyanykh i gazovykh skvazhin na sushe i na more. – 2021. – № 7(343). – S. 9–14. – DOI: 10.33285/0130-3872-2021-7(343)-9-14
6. Field Proof of the New Sliding Technology for Directional Drilling / E. Maidla, M. Haci, S. Jones [et al.] // SPE/IADC Drilling Conf., Amsterdam, Netherlands, Feb. 23–25, 2005. – DOI: 10.2118/92558-MS
7. Zhivaeva V.V., Lukyanov S.A. New Reality of Directional Drilling Services during Production Decline and Coronavirus Pandemic // Economic Systems in the New Era: Stable Systems in an Unstable World. – Cham: Springer, 2020. – Vol. 160. – P. 133–139. – DOI: 10.1007/978-3-030-60929-0_18
8. Shchevelev A.A., Ishbaev G.G. Obzor metodov snizheniya sil treniya pri burenii gorizontal'nykh skvazhin // Neftegazovoe delo. – 2019. – T. 17, № 3. – S. 38–47. – DOI: 10.17122/ngdelo-2019-3-38-47
9. Snizhenie vibratsii v protsesse bureniya putem sovershenstvovaniya konstruktsii PDC dolot / R.R. Mingazov, G.G. Ishbaev, A.G. Baluta [i dr.] // Burenie i neft'. – 2021. – № 4. – S. 14–17.
10. Simonyants S.L., Al' Tii M. Eksperimental'noe issledovanie vibratsiy buril'noy kolonny pri burenii skvazhiny motorizovannoy rotornoy upravlyaemoy sistemoy // Str-vo neftyanykh i gazovykh skvazhin na sushe i na more. – 2020. – № 11(335). – S. 9–11. – DOI: 10.33285/0130-3872-2020-11(335)-9-11
11. Kuznetsov A.B., Griguletskiy V.G. Uprugaya ustoychivost' komponovki nizhney chasti buril'noy kolonny pri burenii gorizontal'nogo uchastka skvazhiny // Str-vo neftyanykh i gazovykh skvazhin na sushe i na more. – 2021. – № 5(341). – S. 5–8. – DOI: 10.33285/0130-3872-2021-5(341)-5-8
12. Kotov A.A., Korotaev B.A. K voprosu o napryazhenno-deformirovannom sostoyanii gorizontal'nogo uchastka buril'noy kolonny // Str-vo neftyanykh i gazovykh skvazhin na sushe i na more. – 2022. – № 1(349). – S. 5–10. – DOI: 10.33285/0130-3872-2022-1(349)-5-10
13. Grechin E.G., Bastrikov S.N., Kuznetsov V.G. Neorientiruemye komponovki dlya bureniya gorizontal'nogo uchastka skvazhin // Str-vo neftyanykh i gazovykh skvazhin na sushe i na more. – 2020. – № 12(336). – S. 5–9. – DOI: 10.33285/0130-3872-2020-12(336)-5-9
14. Dvoynikov M.V. Issledovaniya tekhniko-tekhnologicheskikh parametrov bureniya naklonnykh skvazhin // Zap. Gornogo in-ta. – 2017. – T. 223. – S. 86–92. – DOI: 10.18454/PMI.2017.1.86
15. Morozov V.A., Dvoynikov M.V. Obosnovanie vybora parametrov rezhima napravlennogo bureniya skvazhin vintovymi zaboynymi dvigatelyami // Str-vo neftyanykh i gazovykh skvazhin na sushe i na more. – 2019. – № 2. – S. 15–18. – DOI: 10.30713/0130-3872-2019-2-15-18
16. O klassifikatsii metodov snizheniya sil treniya pri stroitel'stve naklonno-napravlennykh skvazhin s gorizontal'nym okonchaniem / S.V. Lyubimova, L.B. Khuzina, A.F. Shaykhutdinova, R.R. Saitbatalov // Str-vo neftyanykh i gazovykh skvazhin na sushe i na more. – 2022. – № 1(349). – S. 17–21. – DOI: 10.33285/0130-3872-2022-1(349)-17-21
17. Khuzina L.B., Lyubimova S.V. O metodakh snizheniya prikhvatoopasnosti pri burenii naklonno napravlennykh skvazhin s gorizontal'nym okonchaniem // Str-vo neftyanykh i gazovykh skvazhin na sushe i na more. – 2019. – № 12. – S. 13–16. – DOI: 10.30713/0130-3872-2019-12-13-16
18. Luk'yanov S.A., Zhivaeva V.V. Ispol'zovanie diagnosticheskikh dannykh telesistem dlya otsenki kachestva peredachi nagruzki na porodorazrushayushchiy instrument i riskov sloma KNBK // Bulatovskie chteniya. – 2021. – T. 1. – S. 335–337.
19. Khuzina L.B., Shaykhutdinova A.F., Gabzalilova A.Kh. Analiticheskie issledovaniya raboty elementa dinamicheskoy komponovki niza buril'noy kolonny // Neftyanaya provintsiya. – 2018. – № 3(15). – S. 117–126. – DOI: 10.25689/NP.2018.3.117-126
20. On the choice of the oscillators' installation site / L.B. Khuzina, V.S. Mukhametshin, K.T. Tyncherov, A.F. Shaikhutdinova // Int. J. of Civil Engineering and Technology. – 2018. – Vol. 9, Issue 9. – P. 1952–1959.
21. Korrektor podachi-dempfer i protektor zaboynyy proizvodstva OOO NPP "BURINTEKh" / G.G. Ishbaev, A.P. Baluta, S.Yu. Vagapov [i dr.] // Burenie i neft'. – 2019. – № 12. – S. 49–52.
22. Peretyatko A., Kaunda R. Historical Developments of True Triaxial Testing Machines – Challenges and Improvements // 50th U.S. Rock Mechanics/Geomechanics Symposium, Houston, Texas, June 26–29, 2016. – Article No. ARMA-2016-255. – 8 p.
23. Shaykhutdinova A.F. Obosnovanie i razrabotka komponovki s dinamicheski aktivnym elementom dlya povysheniya effektivnosti bureniya skvazhin dolotami PDC: dis. … kand. tekhn. nauk: 25.00.15. – SPb., 2020. – 135 s.
24. Fabrikant N.Ya. Aerodinamika. Ch. 1. – M.-L.: Gos. izd-vo tekhn.-teoret. lit., 1949. – 624 s.
25. Idel'chik I.E. Spravochnik po gidravlicheskim soprotivleniyam. – 2-e izd., pererab. i dop. – M.: Mashinostroenie, 1975. – 559 s.