Study on Simulation Law of Cuttings Migration in Shale Gas Horizontal Wells

Author:

Chen Ye1,Zheng Youcheng2,Zeng Bo1,Fan Yu3,Wu Pengcheng1,Wang Xudong1,Xia Chengyu4ORCID

Affiliation:

1. Shale Gas Research Institute of Petro China Southwest Oil and Gas Field, Chengdu, Sichuan 610051, China

2. PetroChina Southwest Oil and Gas Field Company, Chengdu, Sichuan 610051, China

3. Engineering Technology Research Institute, PetroChina Southwest Oil and Gasfield Company, Chengdu 610031, China

4. School of Mechanical Engineering, Yangtze University, Jingzhou, Hubei 434000, China

Abstract

Inland and offshore oil exploitation, large displacement, and horizontal well are more and more widely used, which can significantly improve the oilfield exploitation efficiency and economic benefits. However, in the complex drilling process, the debris particles generated in the large displacement and horizontal well section drilling are deposited in the lower low-speed area of the lower part of the ring empty shaft. It will cause underground accidents such as complex moving, drilling, increased resistance, drilling column fracture, and so on, which will seriously affect the efficiency and economic benefits of drilling. This paper addresses the problem of annular debris accumulation and the characteristics of high-density drilling fluid and uses the CFD-DEM (discrete cell method) method to simulate the debris movement process in the well eye based on the coupling of FLUENT and EDEM software. The edge calculation is used to provide strong resource allocation and calculation force support for this paper, fully consider the influence of the interaction between drilling fluid, debris particles, and drilling rod and well wall, and explore the influence law of the eccentric ring space of the conventional steel drill pipe.

Publisher

Hindawi Limited

Subject

Computer Science Applications,Software

Reference10 articles.

1. Experimental study of cuttings transport with non-Newtonian fluid in an inclined well using visualization and electrical resistance tomography techniques[J];M. M. Huque;SPE Drilling and Completion,2021

2. Cuttings transport behavior in directional drilling using computational fluid dynamics (CFD)

3. Experimental investigation of cuttings transportation in deviated and horizontal wellbores using polypropylene–nanosilica composite drilling mud

4. Comment on experimental study of inclined debris migration;H. L. Zhang;Drilling process,2013

5. Experimental study on debris movement in large displacement horizontal well section;X. Hengfu;Petroleum Drilling Process,2014

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