Burst Strength Analysis of Casing With Geometrical Imperfections

Author:

Huang Xiaoguang1,Chen Yanyun2,Lin Kai3,Mihsein Musa4,Kibble Kevin5,Hall Richard5

Affiliation:

1. Advantica Technologies Ltd., Ashby Road, Loughborough, LE11 3GR, UK

2. Power Technology Centre, EON UK, Ratcliffe on Soar, Nottingham, NG11 0EE, UK

3. Turbular Goods Research Centre, CNPC, Dian Zi Er Road, Xi’An, 710000, P.R.C.

4. University of Derby, Kedleston Road, Derby, DE22 1GB, UK

5. School of Engineering and Built Environment, University of Wolverhampton, Wolverhampton WV1 1SB, UK

Abstract

Accurately predicting the burst strength is very important in the casing design for the oil and gas industry. In this paper, finite element analysis is performed for an infinitely long thick walled casing with geometrical imperfections subjected to internal pressure. A comparison with a series of full-scale experiments was conducted to verify the accuracy and reliability of the finite element analysis. Furthermore, three predictive equations were evaluated using the test data, and the Klever equation was concluded to give the most accurate prediction of burst strength. The finite element analysis was then extended to study the effects of major factors on the casing burst strength. Results showed that the initial eccentricity and material hardening parameter had important effects on the burst strength, while the effect of the initial ovality was small.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference16 articles.

1. The Development of Risk-Based Burst Design for Well Casing and Tubing;Tallin

2. Burst Strength of Corroded Pipe: Flow Stress Revisited;Klever

3. An Analytical Model to Predict the Burst Capacity of Pipelines;Stewart

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