LAPSE:2023.28142
Published Article

LAPSE:2023.28142
A Casing Deformation Prediction Model Considering the Properties of Cement
April 11, 2023
Abstract
A large amount of casing deformation has occurred in shale gas wells during the complex fracturing process, which affects the fracturing construction and single well production. Based on the statistical analysis of casing deformation wells and caliper logging interpretation, the main mechanism of casing deformation of shale gas wells is revealed as formation slip. By comprehensively considering the rotating speed under casing running condition, the cement solidification heat release under cementing condition, and the fracturing fluid temperature drop under fracturing condition, the safe service margin of the casing is large. Moreover, simply increasing the casing steel grade and wall thickness has no obvious effect on casing deformation prevention, so full wellbore casing deformation prevention measures should be considered. By using the method of unconventional oil and gas well casing string simulation test and numerical simulation, the mechanical response of wellbore and the mechanism of bridge plug resistance are analyzed. By analyzing the influence of elastic modulus and wall thickness of cement on the casing minimum drift diameter after shear deformation, an analytical model of the minimum drift diameter of shale gas casing under the effect of fracture slip is established and verified, which provides technical support for parameter selection of cement and measures to prevent casing deformation.
A large amount of casing deformation has occurred in shale gas wells during the complex fracturing process, which affects the fracturing construction and single well production. Based on the statistical analysis of casing deformation wells and caliper logging interpretation, the main mechanism of casing deformation of shale gas wells is revealed as formation slip. By comprehensively considering the rotating speed under casing running condition, the cement solidification heat release under cementing condition, and the fracturing fluid temperature drop under fracturing condition, the safe service margin of the casing is large. Moreover, simply increasing the casing steel grade and wall thickness has no obvious effect on casing deformation prevention, so full wellbore casing deformation prevention measures should be considered. By using the method of unconventional oil and gas well casing string simulation test and numerical simulation, the mechanical response of wellbore and the mechanism of bridge plug resistance are analyzed. By analyzing the influence of elastic modulus and wall thickness of cement on the casing minimum drift diameter after shear deformation, an analytical model of the minimum drift diameter of shale gas casing under the effect of fracture slip is established and verified, which provides technical support for parameter selection of cement and measures to prevent casing deformation.
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Keywords
analytic model, casing deformation, cement sheath, minimum drift diameter
Suggested Citation
Zeng B, Zhou X, Cao J, Zhou F, Wang Y, Wang Y, Song Y, Hu J, Du Y. A Casing Deformation Prediction Model Considering the Properties of Cement. (2023). LAPSE:2023.28142
Author Affiliations
Zeng B: Shale Gas Research Institute, PetroChina Southwest Oil and Gasfield Company, Chengdu 610051, China
Zhou X: Shale Gas Research Institute, PetroChina Southwest Oil and Gasfield Company, Chengdu 610051, China
Cao J: State Key Laboratory for Performance and Structure Safety of Petroleum Tubular Goods and Equipment Materials, CNPC Tubular Goods Research Institute, Xi’an 710077, China
Zhou F: Development Department, PetroChina Southwest Oil and Gas Field Company, Chengdu 610051, China
Wang Y: Engineering Technology Division, PetroChina Southwest Oil and Gas Field Company, Chengdu 610051, China
Wang Y: Sichuan Shale Gas Exploration and Development Co., Ltd., Neijiang 641000, China
Song Y: Shale Gas Research Institute, PetroChina Southwest Oil and Gasfield Company, Chengdu 610051, China
Hu J: Shale Gas Research Institute, PetroChina Southwest Oil and Gasfield Company, Chengdu 610051, China
Du Y: Shale Gas Research Institute, PetroChina Southwest Oil and Gasfield Company, Chengdu 610051, China
Zhou X: Shale Gas Research Institute, PetroChina Southwest Oil and Gasfield Company, Chengdu 610051, China
Cao J: State Key Laboratory for Performance and Structure Safety of Petroleum Tubular Goods and Equipment Materials, CNPC Tubular Goods Research Institute, Xi’an 710077, China
Zhou F: Development Department, PetroChina Southwest Oil and Gas Field Company, Chengdu 610051, China
Wang Y: Engineering Technology Division, PetroChina Southwest Oil and Gas Field Company, Chengdu 610051, China
Wang Y: Sichuan Shale Gas Exploration and Development Co., Ltd., Neijiang 641000, China
Song Y: Shale Gas Research Institute, PetroChina Southwest Oil and Gasfield Company, Chengdu 610051, China
Hu J: Shale Gas Research Institute, PetroChina Southwest Oil and Gasfield Company, Chengdu 610051, China
Du Y: Shale Gas Research Institute, PetroChina Southwest Oil and Gasfield Company, Chengdu 610051, China
Journal Name
Processes
Volume
11
Issue
3
First Page
695
Year
2023
Publication Date
2023-02-24
ISSN
2227-9717
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Original Submission
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PII: pr11030695, Publication Type: Journal Article
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LAPSE:2023.28142
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https://doi.org/10.3390/pr11030695
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Apr 11, 2023
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