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Modern methods of elimination of lost circulation in directional wells

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Losses of drilling mud and other fluids is the one of the major types of drilling troubles. Annual time losses for their elimination by oil and gas companies are huge. The factors, influencing the mud losses and regulating the direction of the further works, can be divided into two groups: geological and technological. Conducted studies on the use of an insulating composition based on chromium acetate made it possible to identify: the use of the insulation composition on the chrome acetate base allows considerable reduction of time required to eliminate disastrous circulation loss without installation of cement plugs; avoiding BHA replacement; avoiding drilling-in after bullheading and overlapping of lost-circulation layer; low cost, possibility of fast preparation, as it does not entail the delivery of additional chemicals, which also contributes to reduction of time required to eliminate disastrous circulation loss; the use with every type of drilling mud. Basing on the positive experience of the use of this composition in the neighboring regions and considering its economic side, the technique can be used in regions of the Udmurt Republic.
Wydawca
Rocznik
Tom
Strony
65--74
Opis fizyczny
Bibliogr. 29 poz., rys., tab.
Twórcy
  • Tchaikovsky Branch “Perm National Research Polytechnic Institute”, Russia Federal State Budgetary Institution of Science “Udmurt Federal Research Center of the Ural Branch of the Russian Academy of Sciences“, Institute of Mechanics, Russia
  • Silesian University of Technology Faculty of Organization and Management Institute of Economics and Informatics ul. Roosevelta 26, 41-800 Zabrze, Poland
Bibliografia
  • [1] O.V. Savenok, L.V. Povarova, G.V. Kusov “Application of superdeep drilling technology for study of the earth crust”. IOP Conference Series: Earth and Environmental Science. 2020. С. 052066.
  • [2] L. Moroz, A. Uhrynovskyi, V. Popovych, B. Busko, G. Kogut “Effectiveness research of physical and chemical methods appfication for oil recovery enhancing using the asp for the strutynsky oil field conditions”. Management Systems in Production Engineering, 2020, Vol. 28, Issue 2, pp. 104- 111. doi: 10.2478/mspe-2020-0016
  • [3] V.A. Afanasyev “Optimization of well assemblies and well pump equipment of dual completion”. Engineering Practice, no 2, p. 36, 2012.
  • [4] M.N. Baranov, P. Božek, V. Prajová, T.N. Ivanova, D.N. Novokshonov, A.I. Korshunov. “Constructing and calculating of multistage sucker rod string according to reduced stress”. Acta Montanistica Slovaca, vol. 22, no. 2, pp. 107- 115, 2017.
  • [5] A. Dzhus, R. Rachkevych, A. Andrusyak, I. Rachkevych, O. Hryhoruk, S. Kasatkin “Evaluation the stress-strain state of pumping equipment in the curvilinear sections of the wells”. Management Systems in Production Engineering, 2020, Vol. 28, Issue 3, pp. 189-195 doi: 10.2478/mspe2020-0028.
  • [6] A. Andrusyak, J. Grydzhuk, A. Dzhus, I. Steliga “Developing a method for the assessment of axial load in arbitrary cross-sections of the column of pumping rods”. EasternEuropean Journal of Enterprise Technologies, vol. 1, no. 7, pp. 32-37, 2017. doi:10.15587/17294061.2017.92860.
  • [7] L.-M. Lao, H. Zhou ”Application and effect of buoyancy on sucker rod string dynamics”. Journal of Petroleum Science and Engineering, vol. 146, pp. 264-271, 2016. doi: 10.1016/j.petrol.2016.04.029.
  • [8] Q. Li, B. Chen, Z. Huang, H. Tang, G. Li, L. He, “Study on Equivalent Viscous Damping Coefficient of Sucker Rod Based on the Principle of Equal Friction Loss”. Mathematical Problems in Engineering, vol. 2019, 2019. doi: 10.1155/2019/9272751.
  • [9] A. Velychkovych, I. Petryk, L. Ropyak “Analytical Study of Operational Properties of a Plate Shock Absorber of a Sucker-Rod String”. Shock and Vibration, vol. 2020, article ID 3292713, 2020. doi: 10.1155/2020/3292713.
  • [10] D.Y. Wang, H.Z. Liu, “Dynamic modeling and analysis of sucker rod pumping system in a directional well”. Lecture Notes in Electrical Engineering, vol. 408, pp. 1115-1127, 2017. doi: 10.1007/978-981-10-2875-5_90.
  • [11] M. Xing, S. Dong, “An improved longitudinal vibration model and dynamic characteristic of sucker rod string”. Journal of Vibroengineering, vol. 16, no. 7, pp. 3432-3448, 2014.
  • [12] Ł. Bołoz “Interpretation of the results of mechanical rock properties testing with respect to mining methods”. Acta Montanistica Slovaca, vol. 25, 1; pp. 81-93, 2020 doi: 10.46544/AMS.v25i1.8.
  • [13] X. Wang, D. Zhang, C. Sun, Y. Wang. “Surface subsidence control during bag filling mining of super high-water content material in the Handan mining area”. International journal of oil gas and coal technology, Vol. 13, issue 1, p. 87-102, 2016. doi: 10.1504/IJOGCT.2016.078049.
  • [14] P. Strzałkowski, W. Piwowarski, R. Ścigała “The influence of extraction speed on the value of the coefficient of subsidence rate”. Acta Montanistica Slovaca, vol. 24 number 4, pp. 331-341, 2019.
  • [15] M. Jami, A. Solgi, M. Pourkermani, Ali Asghar Moridi Farimani “GIS-based Analysis of Relative Tectonic Activity in Southeast of Iran with a focus on Taftan volcano”. Acta Montanistica Slovaca, vol 24, number 4, pp. 351-365, 2019
  • [16] M.E. Qazizada, E. Pivarčiová “Reliability of parallel and serial centrifugal pumps for dewatering in mining process”. Acta Montanistica Slovaca, vol 23, number 2, pp. 141-152, 2018.
  • [17] M.E. Qazizada, V. Sviatskii, P. Božek. “Analysis performance characteristics of centrifugal pump”. MM Science Journal, 2016.
  • [18] T.N. Ivanova, P. Božek, A.I. Korshunov, V. Koretskiy “Analysis of distortion mechanisms used in rotary steerable systems”. Multidisciplinary Aspects of Production Engineering – MAPE vol. 3, issue 1, pp. 331-346, 2020, doi:10.2478/mape-2020-0029.
  • [19] T. Liang, et al. “Identifying and evaluating surfactant additives to reduce water blocks after hydraulic fracturing for low permeability reservoirs”. Presented at the SPE Improved for Oil Recovery Conference, Tulsa, SPE- 179601- MS, 2016 . https://doi.org/10.2118/179601-MS .
  • [20] Q. Li, et al. “How extremely High-TDS produced water compositions affect selection of fracturing fluid additives”. Presented at the SPE International Symposium on Oilfield Chemistry, The Woodlands, Texas, SPE-173746-MS, 2015. http://dx.doi.org/10.2118/173746-MS
  • [21] A. Raimbay, et al. “Effective of fracture roughness, shear displacement, fluid type, and proppant on the conductivity of a single fracture: a visual and quantitative analysis”. Unconventional resources Conference Canada, pp. 446-470, 2017.
  • [22] C. Han, X. Ren, J. Zheng, “Analysis of abrasion for stator bushings of equal thickness screw pump in high temperature and sand crude oil”. Zhongguo Jixie Gongcheng/China Mechanical Engineering, vol 28, Issue 4, 25, pp. 446-450, 2017.
  • [23] P. Rybár, L. Hvizdák, P. Hronček, M. Jesenský, R. Šimůnek “Computer modelling as a basic research and visualisation tool to research defunct historical mining technologies, using the example of cementation water mining in Smolník (Slovakia)”. Acta Montanistica Slovaca, vol. 22, number 3, pp. 313-322, 2017.
  • [24] I. Stan-Kłeczek “The study of the elastic properties of carbonate rocks on a base of laboratory and field measurement”. Acta Montanistica Slovaca, vol. 21, number 1, pp. 76-83, 2016.
  • [25] P. Flegner, J. Kačur, M. Durdán, M. Laciak “Application of adaptive filters in rock separation by rotary drilling process identification”. Acta Montanistica Slovaca, vol. 20, number 1, pp. 38-48, 2015.
  • [26] Z. Li, Itakura, K.-I., Ma, Y. “Survey of measurement-whiledrilling technology for small-diameter drilling machines”. Electronic Journal of Geotechnical Engineering 19 (Z2). pp. 10267-10282, 2014.
  • [27] M.E. Qazizada, E. Pivarčiová, W. Bialy. Centrifugal pump characteristics computation and reliability evaluation at variable speed driven. ICCT: 5th International Conference on Chemical Technology, Mikulov 2017. ISBN 978-80- 86238-62-3
  • [28] M.E. Qazizada, E. Pivarčiová, W. Bialy. Comparison of Gear and Peripheral pumps performance, evaluation of their reliability at operation region International Journal of Safety Science Vol. 01, No. 02, (2017), pp. 29-39 doi:10.24900/ijss/01024045.2017.0601
  • [29] T.N. Ivanova, A.I. Korshunov, M. Soldán, D.N. Novokshonov, W. Bialy, M.N. Baranov. The Efficiency of Use of Heating Cables in Wells of Complicated Stock. Acta Montanistica Slovaca. ISSN 1335-1788. Volume 23 (2018), number 2, pp. 153-162.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-eeb0faea-69d6-4087-ae39-db51539d7f62
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