Study on Radial Leakage Model and Law of Fractured Formation Drilling Fluid

Author:

Xie Zelong12,Zhu Liang12,Bi Shubo12,Ji Hui12,Wang Tianyi3,Huang Mengting12,Zhang Hao12ORCID,Wu Huimei12

Affiliation:

1. National Engineering Research Center for Oil & Gas Drilling and Completion Technology, School of Petroleum Engineering, Yangtze University, Wuhan 430100, China

2. Hubei Provincial Key Laboratory of Oil and Gas Drilling and Production Engineering, Wuhan 430100, China

3. Key Laboratory of Oil and Gas Resources Exploration Technology, Ministry of Education, Yangtze University, Wuhan 430100, China

Abstract

Wellbore leakage mostly occurs in structurally developed fractured formations. Analyzing the real-time leakage rate during the drilling process plays an important role in identifying the leakage mechanism and its rules on-site. Based on the principles of fluid mechanics and using Herschel-Bulkley (H-B) drilling fluid, by reasonably simplifying the drilling fluid performance parameters, fracture roughness characteristic parameters, pressure difference between the wellbore and formation, and the radial extension length of drilling fluid, the radial leakage model is improved to improve the calculation accuracy. Using the Euler format in numerical analysis to solve the model and with the help of numerical analysis software, the radial leakage law of this flow pattern in the fractures is obtained. The results show that the deformation coefficient of the fracture index, fracture aperture, pressure difference, leakage rate, and cumulative leakage rate are positively correlated. The larger the curvature of the fracture, the rougher the fracture, and the smaller the leakage rate and cumulative leakage rate. The larger the consistency coefficient of the drilling fluid, the greater the additional resistance between the fractures, and the smaller the leakage rate and cumulative leakage rate. As the extending length of the fracture increases, the invasion of drilling fluid decreases, the leakage rate slows down, and eventually reaches zero, with the maximum cumulative leakage rate.

Funder

the 13th Five-Year National Science and Technology Major Project

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

Reference30 articles.

1. Zhao, W.B. (2018, January 14). Study on the mechanism of induced fracture leakage and the countermeasures of preventing and plugging in Liujiagou Formation of Hangjinqi. Proceedings of the 2018 National Natural Gas Academic Annual Conference (04 Engineering Technology), Fuzhou, China.

2. Study on the mechanism of lost circulation in fractured formations in Bohai Sea-Taking Bozhong 34-9 oilfield as an example;Tan;China Pet. Explor.,2021

3. Study on wellbore stability of Bohai deep well;Cui;Petrochem. Technol.,2021

4. High-efficiency plugging technology for fault fracture leakage in Bo hai Oilfield;He;J. Yangtze Univ. (Sci. Ed.),2015

5. Dynamic simulation of fracture leakage process based on ABAQUS;Chen;Drill. Fluid Complet. Fluid,2019

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