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    Fatigue Crack Propagation of Welded Steel Pipeline under Cyclic Internal Pressure by Bézier Extraction Based XIGA

    Source: Journal of Pipeline Systems Engineering and Practice:;2022:;Volume ( 013 ):;issue: 002::page 04022001
    Author:
    Mohammad Mehdi Shoheib
    ,
    Shahram Shahrooi
    ,
    Mohammad Shishehsaz
    ,
    Mahdi Hamzehei
    DOI: 10.1061/(ASCE)PS.1949-1204.0000633
    Publisher: ASCE
    Abstract: Residual stress and cracks after welding are widespread mechanical defects in gas and oil pipelines. Internal pressures cause crack propagation and reduce the fatigue life of pipelines. This study developed a new procedure, based on an extended isogeometric analysis (XIGA) to investigate the effect of welding residual stress and cyclic internal pressure on the crack propagation rate and fatigue life. A new approach based on a thermo elastic-plastic equation is introduced for residual stress analysis. The fundamental aspect of this approach is determining the redistribution of residual stress while the crack is growing, and computing the stress intensity factor (SIF) in the residual stress field. Grid points around the crack surface and crack front are identified by the level set method. Then, discontinuous enrichment functions are added to the XIGA approximation. Thus, remeshing is not required in this method. The residual stress results calculated by the presented numerical method are in good agreement with the hole-drilling strain-gage method results. The interaction integral method was used to extract SIF. The superposition method was employed to consider the effect of welding residual stress and cyclic internal pressure on the SIF. Also, the modified Walker equation was used to calculate the fatigue life caused by cyclic internal pressure and welding residual stress. To validate the results, the same analysis was performed using the finite element method. The results of the presented method are in good agreement with finite element method (FEM) results.
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      Fatigue Crack Propagation of Welded Steel Pipeline under Cyclic Internal Pressure by Bézier Extraction Based XIGA

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4282223
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    • Journal of Pipeline Systems Engineering and Practice

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    contributor authorMohammad Mehdi Shoheib
    contributor authorShahram Shahrooi
    contributor authorMohammad Shishehsaz
    contributor authorMahdi Hamzehei
    date accessioned2022-05-07T20:17:04Z
    date available2022-05-07T20:17:04Z
    date issued2022-01-11
    identifier other(ASCE)PS.1949-1204.0000633.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4282223
    description abstractResidual stress and cracks after welding are widespread mechanical defects in gas and oil pipelines. Internal pressures cause crack propagation and reduce the fatigue life of pipelines. This study developed a new procedure, based on an extended isogeometric analysis (XIGA) to investigate the effect of welding residual stress and cyclic internal pressure on the crack propagation rate and fatigue life. A new approach based on a thermo elastic-plastic equation is introduced for residual stress analysis. The fundamental aspect of this approach is determining the redistribution of residual stress while the crack is growing, and computing the stress intensity factor (SIF) in the residual stress field. Grid points around the crack surface and crack front are identified by the level set method. Then, discontinuous enrichment functions are added to the XIGA approximation. Thus, remeshing is not required in this method. The residual stress results calculated by the presented numerical method are in good agreement with the hole-drilling strain-gage method results. The interaction integral method was used to extract SIF. The superposition method was employed to consider the effect of welding residual stress and cyclic internal pressure on the SIF. Also, the modified Walker equation was used to calculate the fatigue life caused by cyclic internal pressure and welding residual stress. To validate the results, the same analysis was performed using the finite element method. The results of the presented method are in good agreement with finite element method (FEM) results.
    publisherASCE
    titleFatigue Crack Propagation of Welded Steel Pipeline under Cyclic Internal Pressure by Bézier Extraction Based XIGA
    typeJournal Paper
    journal volume13
    journal issue2
    journal titleJournal of Pipeline Systems Engineering and Practice
    identifier doi10.1061/(ASCE)PS.1949-1204.0000633
    journal fristpage04022001
    journal lastpage04022001-15
    page15
    treeJournal of Pipeline Systems Engineering and Practice:;2022:;Volume ( 013 ):;issue: 002
    contenttypeFulltext
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