1. Baldenko DF, Baldenko FD, Gnoevykh AN. Single screw hydraulic machines. Vol. 2. Screw downhole engines. Moscow, Gazprom Information and Advertising Center, 2007, 470. EDN QMJKHP
2. Raupov I, Rogachev M, Shevaldin E. Review of Formation Mechanisms, Localization Methods, and Enhanced Oil Recovery Technologies for Residual Oil in Terrigenous Reservoirs. Energies. 2025;18(21):5649. https://doi.org/10.3390/en18215649
3. Nutskova MV. Effect of Mineral Wool Impregnated with Carbon Nanotubes on Properties of Cement at High Temperatures. International Journal of Engineering, Transactions A: Basics. 2025;38(1):148-151. https://doi.org/10.5829/ije.2025.38.01a.14
4. Simonyants SL, Al Taee M. Stimulation of the Drilling Process with the Top Driven Screw Downhole Motor. Journal of Mining Institute. 2019;238:438-442. https://doi.org/10.31897/PMI.2019.4.438
5. Lyagov IA, Baldenko FD, Lyagov AV, Yamaliev VU, Lyagova AA. Methodology for calculating technical efficiency of power sections in small-sized screw downhole motors for the «Perfobur» system. Journal of Mining Institute. 2019;240:694-700. https://doi.org/10.31897/PMI.2019.6.694
6. Neskromnykh VV, Popova MS, Golovchenko AE, Petenev PG, Baochang L. Method of drilling process control and experimental studies of resistance forces during bits drilling with PDC cutters. Journal of Mining Institute. 2020;245:539-546. https://doi.org/10.31897/PMI.2020.5.5
7. Invention patent application №2025132209 Russian Federation. Two-section positive displacement downhole motor with a bi-rotor mechanism of action / M.V. Dvoynikov, D.O. Morozov; applicant Federal State Budgetary Educational Institution of Higher Education “Saint Petersburg Mining University”. Declared 19.11.2025
8. Chuyko EV, Chetvertneva IA, Movsumzade EM, Loginova ME, Tivas NS, Giniyatullin AN. History of horizontal drilling technology development of oil and gas wells. History and Pedagogy of Natural Science. 2024;3-4:74-78. https://doi.org/10.24412/2226-2296-2024-3-4-74-78
9. Litvinenko VS, Petrov EI, Vasilevskaya DV. Assessment of the role of the state in the management of mineral resources. Journal of Mining Institute. 2023;259:95-111. https://doi.org/10.31897/PMI.2022.100
10. Blinov PA, Silichev NM, Nikishin VV, Gorelikov VG. Substantiation and development of a methodology for calculating the bending of the drive shaft of a continuous deflector for drilling with coring. SOCAR Proceedings. 2025;3:39-48. https://doi.org/10.5510/OGP20250301095
11. Sidorkin DI, Kupavykh KS. Justification on Choosing Screw Pumping Units as Energy Efficient Artificial Lift Technology. Energetika. Proceedings of CIS Higher Education Institutions and Power Engineering Associations. 2021;64(2):143-51. https://doi.org/10.21122/1029-7448-2021-64-2-143-151
12. Baldenko DF, Baldenko FD, Gnoevykh AN. Single screw hydraulic machines. Vol. 1. Single screw pumps. Moscow, Gazprom Information and Advertising Center, 2005, 488. EDN QMJKIJ
13. Kuang Y, Zhou J. Performance evaluation for positive displacement motors by combining fluid-structure interaction simulations and experiments. SPE Journal. 2025;30(1):152-68. https://doi.org/10.2118/223929-PA
14. Shi C, Wan X, Deng J, Zhu X. Research on fatigue lifetime prediction of stator rubber bushing based on rubber aged experiment. Journal of Testing and Evaluation. 2022;50(4):2209-26. https://doi.org/10.1520/JTE20200669
15. Povalikhin AS. A technology of a horizontal well drilling in case of a casing string combined rotation. Petroleum Engineer. 2019;3:5-9. EDN YEEHYT
16. Baldenko DF, Baldenko FD. Working process features and characteristics of positive displacement motors in the rotation mode of a drill string. Drilling and Oil. 2019;11:8-13. EDN YIMPTH
17. Geng H, Zhang B, Xie Y. Rotary Steerable Drilling Technology: Bottlenecks, Breakthroughs and Intelligent Trends in China Shale Gas Development. Processes. 2025;13(11):3471. https://doi.org/10.3390/pr13113471
18. Biletskyi V, Landar S, Mishchuk Y. Modeling of the power section of downhole screw motors. Mining of Mineral Deposits. 2017;11(3):15-22. https://doi.org/10.15407/mining11.03.015
19. Patent RU 2 368 752 C1. Counter-rotating turboprop engine. Morozov NS, Sysoev NI. Declared 20.05.2008. Published 27.09.2009. (In Russian). EDN LNPIMG
20. Patent US 9 771 787 B2. Multi-directionally rotating downhole drilling assembly and method. Smith G. Declared 14.10.2016. Published 26.09.2017. (In English)
21. Kunshin AA, Buslaev GV, Reich M, Ulyanov DS, Sidorkin DI. Numerical simulation of nonlinear processes in the “Thruster-Downhole Motor-Bit” system while extended reach well drilling. Energies. 2023;16(9):3759. https://doi.org/10.3390/en16093759
22. Tananykhin DS. Scientific and methodological support of sand management during operation of horizontal wells. International Journal of Engineering, Transactions A: Basics. 2024;37(7):1395-407. https://doi.org/10.5829/ije.2024.37.07a.17
23. Patent RU 2 524 238 C2. Screw downhole motor. Baldenko DF, Baldenko FD, Baletinskikh DI, Vorobyev VG, Lunev AV, Selivanov SM, Smirnov AS. Declared 17.08.2012. Published 27.07.2014. (In Russian)
24. Shi X, Jiao Y, Yang X, Liu J, Zhuo Y. Establishment of drill-string system dynamic model with PDM and influence of PDM parameters on stick-slip vibration. Arabian Journal for Science and Engineering. 2024;49:8727-39. https://doi.org/10.1007/s13369-023-08620-z
25. Ritto TG, Aguiar RR, Hbaieb S. Validation of a drill string dynamical model and torsional stability. Meccanica. 2017;52:2959-2967. https://doi.org/10.1007/s11012-017-0628-y
26. Samuel R, Baldenko DF, Baldenko FD. Mud Motor PDM Dynamics: A Control Model for Automation. IADC/SPE International Drilling Conference and Exhibition. 2022; Paper SPE-208789-MS. https://doi.org/10.2118/208789-MS
27. Samuel R, Baldenko DF, Baldenko FD. Mud Motor PDM Dynamics: An Analytical Model. SPE Annual Technical Conference and Exhibition. 2021; Paper SPE-206064-MS. https://doi.org/10.2118/206064-MS
28. Pierson JL, Kharrouba M, Magnaudet J. Hydrodynamic torque on a slender cylinder rotating perpendicularly to its symmetry axis. Physical Review Fluids. 2021;6:094303. https://doi.org/10.1103/PhysRevFluids.6.094303
29. He Y, Chen Y, Hao X, Deng S, Li C. Research on dynamic calculation methods for deflection tools in deepwater shallow soft formation directional wells. Processes. 2025;13(6):1947. https://doi.org/10.3390/pr13061947
30. Baravian C, Quemada D. Using instrumental inertia in controlled-stress rheometry. Rheologica Acta. 1998;37:223-233. https://doi.org/10.1007/s003970050110
31. Lu D, Wang M, Xu Y, Wang X. Analytical Determination of Stick–Slip Whirling Vibrations and Bifurcations in Rotating Machinery. Applied Sciences. 2024;14(16):7338. https://doi.org/10.3390/app14167338
32. Lyagov IA, Lyagov AV, Isangulov DR, Lyagova AA. Selection of the required number of circulating subs in a special assembly and investigation of their performance during drilling of radial branching channels by sectional positive displacement motors. Journal of Mining Institute. 2024;265:78-86. EDN ZBPWKU
33. Leusheva EL. Evaluation of possible application of powder made from fallen tree leaves as a drilling mud additive. International Journal of Engineering Transactions B: Applications. 2024;37:1592-1599. https://doi.org/10.5829/ije.2024.37.08b.12
34. Leusheva EL, Morozov AO, Morozov DO. Ecological biodegradable additives for improving rheological and filtration characteristics of water-based drilling mud. Perm Journal of Petroleum and Mining Engineering. 2024;24(3):120-130. https://doi.org/10.15593/2712-8008/2024.3.3
35. Rybakov DA, Dorokhin EG, Andreev KV, Buslaev GV. Development of a Hydraulic Circulation Sub as a Tool to Prevent Mud Losses During Well Drilling. International Journal of Engineering Transactions A: Basics. 2024;37(10):2091-98. https://doi.org/10.5829/IJE.2024.37.10A.19
36. Dong G, Chen P. The vibration characteristics of drillstring with positive displacement motor in compound drilling Part 2: Transient dynamics and bit control force analysis. International Journal of Hydrogen Energy. 2018;43(27):12189-12199. https://doi.org/10.1016/j.ijhydene.2018.02.198
37. Al Shekaili A, Liy Y, Papatheou E. Drilling performance analysis of a polycrystalline diamond compact bit via finite element and experimental investigations. International Journal of Rock Mechanics and Mining Sciences. 2024;182:105862. https://doi.org/10.1016/j.ijrmms.2024.105862
38. Aribowo AG, Aarsnes UJ, Chen K. Analysis of a downhole passive regulator in drilling: A distributed parameter modeling approach. Journal of Sound and Vibration. 2024;618:119300. https://doi.org/10.1016/j.jsv.2025.119300