During the practice of oil and gas drilling and exploration, the casing wear became more and more serious and well known. A crescent-shaped wear pattern is the major wear type and leads to decrease of casing collapse strength. It is obvious that the casing design and safety assessment must take casing wear into account. However, existing empirical equations generally neglect the effect of manufacturing defects on collapse strength, which leads to a large error between calculated results and experimental data. To address the need, the wear mechanism is studied in this paper, and the effects of both wear and manufacturing defects on the collapse strength are considered. Based on this study, a new equation for calculating the collapse strength of a casing with crescent-shaped wear is presented. Comparison with experiment and alternate assessment methods shows that the new equation is much better than other methods and its calculated results are much closer to the experimental data. The new equation was used for the casing design of ultra-deep wells, especially in the north–west part of China.
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June 2015
Research-Article
A New Crescent-Shaped Wear Equation for Calculating Collapse Strength of Worn Casing Under Uniform Loading
Yuanhua Lin,
Yuanhua Lin
1
State Key Laboratory of Oil and Gas
Reservoir Geology and Exploitation,
e-mail: Yhlin28@163.com
Reservoir Geology and Exploitation,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
e-mail: Yhlin28@163.com
1Corresponding author.
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Kuanhai Deng,
Kuanhai Deng
1
State Key Laboratory of Oil and Gas
Reservoir Geology and Exploitation,
e-mail: dengkuanhai@163.com
Reservoir Geology and Exploitation,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
e-mail: dengkuanhai@163.com
1Corresponding author.
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Xing Qi,
Xing Qi
CNPC Key Laboratory for Tubular
Goods Engineering,
Goods Engineering,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
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Wanying Liu,
Wanying Liu
School of Material Science and Engineering,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
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Dezhi Zeng,
Dezhi Zeng
CNPC Key Laboratory for Tubular
Goods Engineering,
Goods Engineering,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
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Hongjun Zhu,
Hongjun Zhu
CNPC Key Laboratory for Tubular
Goods Engineering,
Goods Engineering,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
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Dajiang Zhu
Dajiang Zhu
CNPC Key Laboratory for Tubular
Goods Engineering,
Goods Engineering,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
Search for other works by this author on:
Yuanhua Lin
State Key Laboratory of Oil and Gas
Reservoir Geology and Exploitation,
e-mail: Yhlin28@163.com
Reservoir Geology and Exploitation,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
e-mail: Yhlin28@163.com
Kuanhai Deng
State Key Laboratory of Oil and Gas
Reservoir Geology and Exploitation,
e-mail: dengkuanhai@163.com
Reservoir Geology and Exploitation,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
e-mail: dengkuanhai@163.com
Xing Qi
CNPC Key Laboratory for Tubular
Goods Engineering,
Goods Engineering,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
Wanying Liu
School of Material Science and Engineering,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
Dezhi Zeng
CNPC Key Laboratory for Tubular
Goods Engineering,
Goods Engineering,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
Hongjun Zhu
CNPC Key Laboratory for Tubular
Goods Engineering,
Goods Engineering,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
Dajiang Zhu
CNPC Key Laboratory for Tubular
Goods Engineering,
Goods Engineering,
Southwest Petroleum University
,Chengdu, Sichuan 610500
, China
1Corresponding author.
Contributed by the Pressure Vessel and Piping Division of ASME for publication in the JOURNAL OF PRESSURE VESSEL TECHNOLOGY. Manuscript received April 25, 2013; final manuscript received December 5, 2014; published online February 12, 2015. Assoc. Editor: Allen C. Smith.
J. Pressure Vessel Technol. Jun 2015, 137(3): 031201 (6 pages)
Published Online: June 1, 2015
Article history
Received:
April 25, 2013
Revision Received:
December 5, 2014
Online:
February 12, 2015
Citation
Lin, Y., Deng, K., Qi, X., Liu, W., Zeng, D., Zhu, H., and Zhu, D. (June 1, 2015). "A New Crescent-Shaped Wear Equation for Calculating Collapse Strength of Worn Casing Under Uniform Loading." ASME. J. Pressure Vessel Technol. June 2015; 137(3): 031201. https://doi.org/10.1115/1.4029588
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