Study on the Vertical Stability of Drilling Wellbore under Optimized Constraints

Author:

Pan Ruixue1ORCID,Liu Jimin12,Cheng Hua12,Fan Haixu1

Affiliation:

1. School of Civil Engineering and Architecture, Anhui University of Science and Technology, Huainan 232001, China

2. Engineering Research Center of Underground Mine Engineering, Ministry of Education, Anhui University of Science and Technology, Huainan 232001, China

Abstract

With the development of coal resource extraction and wellbore construction proceeding towards deeper depths, the stability of drilling wellbore structures has become increasingly severe, even posing a barrier to the use of drilling method technology in deep wellbore construction. To address this issue, this study raised an optimized constraints method involving pre-throwing cement slurry to the bottom before wellbore decent, altering bottom constraints. Firstly, the critical depth and instability criterion of this optimized method was derived by catastrophe theory. Subsequently, the role of single-factor and multi-factor sensitivity analyses on critical depth was discussed. The engineering effects of optimized constraint methods were contrasted and examined in several drilling projects. Finally, the characteristic values of real engineering were computed using numerical techniques and ABAQUS2020 software, and the efficacy of optimization approaches was examined and validated. The results revealed that the critical depth increased by 41.39 ± 5%. The influence factors described in order of the degree were the counterweight water height, the elastic modulus, the thickness of the wellbore, and the self-weight of the wellbore, sequentially. The conclusion on structural stability between the numerical calculation solution and theoretical calculation solution was completely the same. The optimized constraints method can effectively improve the stability of the wellbore structure.

Funder

Anhui Province Key Laboratory of Building Structure and Under-ground Engineering (Hefei), Anhui Jianzhu University

Publisher

MDPI AG

Reference36 articles.

1. Zhao, S., Chen, X., and Zhao, X. (2018, January 29–30). Analysis of current status and development direction of coal mining technology in China. Proceedings of the 4th International Conference on Energy Science and Applied Technology (ESAT 2018), Chongqing, China.

2. Sustainability of coal mining. is Germany a post-mining model for Colombia?;Gustavo;Resour. Policy,2023

3. Development of a Software Tool for Visualizing a Mine (Wellbore) in the Industrial Drilling of Oil Wells;Fares;Processes,2023

4. Experimental Study on Enhancing Wellbore Stability of Coal Measures Formation with Surfactant Drilling Fluid;Zou;Chem. Technol. Fuels Oil,2021

5. The mechanism and countermeasures of inclined well wellbore instability in Dibei deep coal seam;Zhang;J. Pet. Explor. Prod. Technol.,2022

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