Burst strength of tubing and casing based on twin shear unified strength theory.

The internal pressure strength of tubing and casing often cannot satisfy the design requirements in high pressure, high temperature and high H2S gas wells. Also, the practical safety coefficient of some wells is lower than the design standard according to the current API 5C3 standard, which brings s...

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Main Authors: Yuanhua Lin, Kuanhai Deng, Yongxing Sun, Dezhi Zeng, Wanying Liu, Xiangwei Kong, Ambrish Singh
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4232241?pdf=render
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spelling doaj-b72d72bbe12446a7a08781ff14695a2b2020-11-25T02:13:56ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-01911e11142610.1371/journal.pone.0111426Burst strength of tubing and casing based on twin shear unified strength theory.Yuanhua LinKuanhai DengYongxing SunDezhi ZengWanying LiuXiangwei KongAmbrish SinghThe internal pressure strength of tubing and casing often cannot satisfy the design requirements in high pressure, high temperature and high H2S gas wells. Also, the practical safety coefficient of some wells is lower than the design standard according to the current API 5C3 standard, which brings some perplexity to the design. The ISO 10400: 2007 provides the model which can calculate the burst strength of tubing and casing better than API 5C3 standard, but the calculation accuracy is not desirable because about 50 percent predictive values are remarkably higher than real burst values. So, for the sake of improving strength design of tubing and casing, this paper deduces the plastic limit pressure of tubing and casing under internal pressure by applying the twin shear unified strength theory. According to the research of the influence rule of yield-to-tensile strength ratio and mechanical properties on the burst strength of tubing and casing, the more precise calculation model of tubing-casing's burst strength has been established with material hardening and intermediate principal stress. Numerical and experimental comparisons show that the new burst strength model is much closer to the real burst values than that of other models. The research results provide an important reference to optimize the tubing and casing design of deep and ultra-deep wells.http://europepmc.org/articles/PMC4232241?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Yuanhua Lin
Kuanhai Deng
Yongxing Sun
Dezhi Zeng
Wanying Liu
Xiangwei Kong
Ambrish Singh
spellingShingle Yuanhua Lin
Kuanhai Deng
Yongxing Sun
Dezhi Zeng
Wanying Liu
Xiangwei Kong
Ambrish Singh
Burst strength of tubing and casing based on twin shear unified strength theory.
PLoS ONE
author_facet Yuanhua Lin
Kuanhai Deng
Yongxing Sun
Dezhi Zeng
Wanying Liu
Xiangwei Kong
Ambrish Singh
author_sort Yuanhua Lin
title Burst strength of tubing and casing based on twin shear unified strength theory.
title_short Burst strength of tubing and casing based on twin shear unified strength theory.
title_full Burst strength of tubing and casing based on twin shear unified strength theory.
title_fullStr Burst strength of tubing and casing based on twin shear unified strength theory.
title_full_unstemmed Burst strength of tubing and casing based on twin shear unified strength theory.
title_sort burst strength of tubing and casing based on twin shear unified strength theory.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description The internal pressure strength of tubing and casing often cannot satisfy the design requirements in high pressure, high temperature and high H2S gas wells. Also, the practical safety coefficient of some wells is lower than the design standard according to the current API 5C3 standard, which brings some perplexity to the design. The ISO 10400: 2007 provides the model which can calculate the burst strength of tubing and casing better than API 5C3 standard, but the calculation accuracy is not desirable because about 50 percent predictive values are remarkably higher than real burst values. So, for the sake of improving strength design of tubing and casing, this paper deduces the plastic limit pressure of tubing and casing under internal pressure by applying the twin shear unified strength theory. According to the research of the influence rule of yield-to-tensile strength ratio and mechanical properties on the burst strength of tubing and casing, the more precise calculation model of tubing-casing's burst strength has been established with material hardening and intermediate principal stress. Numerical and experimental comparisons show that the new burst strength model is much closer to the real burst values than that of other models. The research results provide an important reference to optimize the tubing and casing design of deep and ultra-deep wells.
url http://europepmc.org/articles/PMC4232241?pdf=render
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AT yongxingsun burststrengthoftubingandcasingbasedontwinshearunifiedstrengththeory
AT dezhizeng burststrengthoftubingandcasingbasedontwinshearunifiedstrengththeory
AT wanyingliu burststrengthoftubingandcasingbasedontwinshearunifiedstrengththeory
AT xiangweikong burststrengthoftubingandcasingbasedontwinshearunifiedstrengththeory
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