Safety and reliability assessment of gas pipelines under building occupation

Building occupation is common for pipelines in urban area, which likely leads to the subsidence of foundations and deformation of pipelines and induces accidents such as oil and gas leakage, even explosions. In this study, a pipeline reliability model based on stress-strength interference was establ...

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Main Authors: Xingyu PENG, Guifang CHEN, Lei CHEN, Zhe ZHANG, Shiman SU
Format: Article
Language:zho
Published: Editorial Office of Oil & Gas Storage and Transportation 2022-05-01
Series:You-qi chuyun
Subjects:
Online Access:http://yqcy.xml-journal.net/cn/article/doi/10.6047/j.issn.1000-8241.2022.05.007
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author Xingyu PENG
Guifang CHEN
Lei CHEN
Zhe ZHANG
Shiman SU
author_facet Xingyu PENG
Guifang CHEN
Lei CHEN
Zhe ZHANG
Shiman SU
author_sort Xingyu PENG
collection DOAJ
description Building occupation is common for pipelines in urban area, which likely leads to the subsidence of foundations and deformation of pipelines and induces accidents such as oil and gas leakage, even explosions. In this study, a pipeline reliability model based on stress-strength interference was established. Meanwhile, the distribution of three random parameters under building occupation, including the additional stress under building occupation, the maximum reduced stress of dangerous pipeline sections and the pipe yield strength, were analyzed based on the theory of structural reliability. In order to achieve equivalent normalization, the variables in abnormal distribution were processed according to the classic JC algorithm, and the iterative initial value of the unknown was set based on the structural linearity performance functions to improve the convergence speed and precision of the algorithm. In addition, a reliability model of gas pipeline under the occupation of framed and brick-concrete buildings based on M-JC algorithm was established, and the reliability of the occupied pipeline was analyzed by implementing the M-JC algorithm in combination with Matlab programming. As shown by the results, the reliability of pipeline sections under the occupation of the framed and brick-concrete buildings is 0.985 2 and 0.999 8, respectively, indicating that the surface overburden load has little effect on the undamaged pipeline. In addition, the error between the results of M-JC algorithm and JC algorithm is very small, with a relative error less than 1%. Generally, the research results are applicable to the analysis on reliability of pipeline under building occupation and have reference value to the safe operation of pipelines and the urban construction planning.
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spelling doaj.art-33d1a3b878a7439dad14849b0c2aa7d52024-04-13T02:20:11ZzhoEditorial Office of Oil & Gas Storage and TransportationYou-qi chuyun1000-82412022-05-0141554955610.6047/j.issn.1000-8241.2022.05.007yqcy-41-5-549Safety and reliability assessment of gas pipelines under building occupationXingyu PENG0Guifang CHEN1Lei CHEN2Zhe ZHANG3Shiman SU4Petroleum Engineering School, Southwest Petroleum UniversityPetroleum Engineering School, Southwest Petroleum UniversityCNPC Xinjiang Oilfield Gas Storage Co. Ltd.CNPC Xinjiang Oilfield Gas Storage Co. Ltd.Northeast Sichuan Gas Mine, PetroChina Southwest Oil & Gasfield CompanyBuilding occupation is common for pipelines in urban area, which likely leads to the subsidence of foundations and deformation of pipelines and induces accidents such as oil and gas leakage, even explosions. In this study, a pipeline reliability model based on stress-strength interference was established. Meanwhile, the distribution of three random parameters under building occupation, including the additional stress under building occupation, the maximum reduced stress of dangerous pipeline sections and the pipe yield strength, were analyzed based on the theory of structural reliability. In order to achieve equivalent normalization, the variables in abnormal distribution were processed according to the classic JC algorithm, and the iterative initial value of the unknown was set based on the structural linearity performance functions to improve the convergence speed and precision of the algorithm. In addition, a reliability model of gas pipeline under the occupation of framed and brick-concrete buildings based on M-JC algorithm was established, and the reliability of the occupied pipeline was analyzed by implementing the M-JC algorithm in combination with Matlab programming. As shown by the results, the reliability of pipeline sections under the occupation of the framed and brick-concrete buildings is 0.985 2 and 0.999 8, respectively, indicating that the surface overburden load has little effect on the undamaged pipeline. In addition, the error between the results of M-JC algorithm and JC algorithm is very small, with a relative error less than 1%. Generally, the research results are applicable to the analysis on reliability of pipeline under building occupation and have reference value to the safe operation of pipelines and the urban construction planning.http://yqcy.xml-journal.net/cn/article/doi/10.6047/j.issn.1000-8241.2022.05.007gas pipelinesbuildingoccupationm-jc algorithmreliabilityassessment
spellingShingle Xingyu PENG
Guifang CHEN
Lei CHEN
Zhe ZHANG
Shiman SU
Safety and reliability assessment of gas pipelines under building occupation
You-qi chuyun
gas pipelines
building
occupation
m-jc algorithm
reliability
assessment
title Safety and reliability assessment of gas pipelines under building occupation
title_full Safety and reliability assessment of gas pipelines under building occupation
title_fullStr Safety and reliability assessment of gas pipelines under building occupation
title_full_unstemmed Safety and reliability assessment of gas pipelines under building occupation
title_short Safety and reliability assessment of gas pipelines under building occupation
title_sort safety and reliability assessment of gas pipelines under building occupation
topic gas pipelines
building
occupation
m-jc algorithm
reliability
assessment
url http://yqcy.xml-journal.net/cn/article/doi/10.6047/j.issn.1000-8241.2022.05.007
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AT leichen safetyandreliabilityassessmentofgaspipelinesunderbuildingoccupation
AT zhezhang safetyandreliabilityassessmentofgaspipelinesunderbuildingoccupation
AT shimansu safetyandreliabilityassessmentofgaspipelinesunderbuildingoccupation