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LITHOLOGICAL-STRATIGRAPHIC CHARACTERISTICS AND PROSPECTS FOR OIL AND GAS POTENTIAL OF THE MESOZOICPALEOZOIC DEPOSITS OF THE MUYNAK UPLIFT

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To increase hydrocarbon reserve growth, it is necessary to involve areas in the immediate vicinity of established oil and gas accumulation zones in geological exploration, as they developed under similar geological conditions within a single sedimentary basin. In the central part of the Ustyurt oil and gas region, deposits have been discovered in Jurassic sediments within the Berdakh swell, adjacent to the east by the Muynak Uplift. Analysis of available geological and geophysical data, including the study of lithological, stratigraphic, and reservoir properties, allows us to predict the oil and gas potential of Mesozoic rocks in this part of the Northеn Ustyurt Basin. Deep drilling has revealed the presence of Lower Carboniferous limestones here, which are also potential reservoirs for oil and gas deposits. The obtained indirect signs of oil and gas content in wells indicate the need to continue exploration work with the aim of discovering hydrocarbon deposits.

AUTHORS

M.Yuldasheva

State Institution “Institute of Geology and Exploration of Oil and Gas Fields”, Tashkent city, Republic of Uzbekistan

S.Nursultan

State Institution “Institute of Geology and Exploration of Oil and Gas Fields”, Tashkent city, Republic of Uzbekistan

U.Shakhnoza

State Institution “Institute of Geology and Exploration of Oil and Gas Fields”, Tashkent city, Republic of Uzbekistan

Tags

# clay# reservoir# limestone# Jurassic# sandstone# paleozoic# Ustyurt region# Muynak uplift# seal

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References

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1. Barvinok V.A., Bikbulatov I.K., Blinkov O.G., Ishchuk A.G., Torgashov A.V. Modern roller bits, problems of their improvement and increasing reliability // Samara: Publishing House of the Samara Scientific Center of the Russian Academy of Sciences, 2000 - 190 p. [In Russ]. 2. Miska S.Z., Mitchell R.F., Ozbayoglu E.M. Drilling mechanics. Advanced applications and technology. McGraw-Hill Book Company, 2022, 963 р. 3. Gusman A.M. Controlling the process of cleaning the bottom of a well being drilled. Author's abstract. dis. ... doc. tech. Sci. – Moscow, 2000. – 50 p. 4. Ramsey M. Practical Wellbore Hydraulics and Hole Cleaning: Unlock Faster, more Efficient, and Trouble-Free Drilling Operations. Texas, Gulf Professional Publishing, 2019, 329 р.

5. Bogomolov R. M., Serikov D. Yu. Ways to improve bottomhole cleaning systems when drilling with blowing bits. NEFTEGAZ Territory. 2019, no. 4, pp.14– 19. [In Russ]. 6. Vinogradov Yu. I., Khokhlov S. V., Zigangirov R. R., Miftakhov A. A., Suvorov Yu. I. Optimization of specific energy consumption for crushing rocks by explosion in deposits with a complex geological structure. Notes of the Mining Institute. 2024, vol. 266, pp. 231–245. [In Russ]. 7. Guan Z., Chen T., Liao H. Theory and Technology of Drilling Engineering. China University of Petroleum Press and Springer Nature Singapore Pte Ltd, 2021, 557 p.

8. 8.Barskii I.L., Gusman A.M., Povalikhin A.S. Development of a Method for Drilling of Straight Section of Various Type Wellbores// Proceeding ETCE/OMAE 2000 Joint Conference, New Orleans, Louisiana, USA, February 14-17, 2000. 9. Ryabchenko V. I. Control of the properties of drilling fluids. Moscow, Nedra, 1990, 230 p. 10. Kamenskikh S. V. Clamps of drilling tools. Vologda, Infra-Engineering, 2023, 120 p. [In Russ]. 11. Zakirov N.N. Influence of technological parameters of the drilling process on the wear of bit 1 1,5 2 2,5 3 3,5 4 4,5 5 5,5 6 6,5 7 69 103 200 300 Ndv.rotor, kW n, мин-1 БС К№ 1 К№ 2 К№ 3 GEOLOGICAL ENGINERING Technical science and innovation. №4/2025 29 components // Izv. universities Oil and gas. - Tyumen: TyumGNGU. - 2004.-No. 9.- P. 69 – 74. [In Russ].

12. Davidenko A. N., Ignatov A. A., Polishchuk P. P. Transportation of destruction products during well drilling. Dnepropetrovsk, NSU, 2016, 116 p. [In Russ]

13. Aseel A., Aslam Abdullah M., Rithul R., Sidharth P. V., Karthik K. O., Jerry J. Analysis of pipe sticking due to wellbore uncleanliness using machine learning. Heliyon. 2023, vol. 9, issue 4. DOI: 10.1016/j.heliyon.2023.e22366. 14. Kadochnikov V. G. Development of technology for hydromechanical cleaning of inclined wells from sludge during rotary drilling. Author's abstract. dis. doc. tech. Sci. St. Petersburg, SPGU, 2022, 22 p. [In Russ]. 15. Toshov Zh. B. Ways and means of combating the process of oil seal formation when drilling wells. Mining Bulletin of Uzbekistan. 2016, no. 1, pp. 42–48. [In Russ].

16. Mitchell J. Trouble–free drilling. Houston: Dilbert Engineering Inc., 2001, 334 p. 17. Babin I. M. Methodology for predicting differential sticking of a drill string. Collection of proceedings of the 76th international youth scientific conference “Oil and Gas – 2022”. Moscow, 2022, pp. 33– 47. [In Russ]. 18. Khatamova D. N. Scientific principles of effective operation of drilling rigs based on the development of resource-saving technologies. Author's abstract. dis. ... doc. tech. sci. Navoi, NSUMT, 2024, 58 p. [In Russ].

19. Crumpton H. Well Control for Completions and Interventions. Texas, Gulf Professional Publishing, 2018, 815 р. 20. Khatamova D. N. Increasing the efficiency of hydraulic cleaning of the well bottom based on improving the design of the drilling rig. Journal of Advances in Engineering Technology. 2024, vol. 3 (15), pp. 91–99. [In Russ]. DOI: 10.24412/2181-1431-2024-3-91-99.