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    Effect of Expansion Ratio and Wall Thickness on Large-Diameter Solid Expandable Tubular After Expansion

    Source: Journal of Pressure Vessel Technology:;2021:;volume( 143 ):;issue: 005::page 051305-1
    Author:
    Shi, Changshuai
    ,
    Chen, Kailin
    ,
    Zhu, Xiaohua
    ,
    Cheng, Feilong
    ,
    Qi, Yuekui
    ,
    Li, Jianan
    DOI: 10.1115/1.4050220
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: The large-diameter solid expandable tubular (SET) with a smaller wall thickness faces the risk of internal pressure burst and external squeeze collapse in repairing damaged casing well. The internal pressure and external squeezing resistance calculation of the tubes using the analytical method require many expansion experiments and postexpansion tensile experiments, resulting in high costs and low efficiency. This paper gives a set of laboratory expansion and postexpansion performance test, which is based on the laboratory experiment and mechanical properties of material expansion. Two materials are studied: 316 L and 20G. Then it analyses the error and causes of the error in the traditional analytical algorithm. Besides, it establishes an accurate finite element (FE) model to study the quantitative influence of expansion ratio and wall thickness on the burst strengths and collapse strengths of the tube. The results show that the toughness and hardening ratio of 316 L is better than 20G at the same expansion ratio. The numerical simulation results of the model can effectively simulate the expansion process and the mechanical properties of SET in good agreement with the laboratory test results. The expansion ratio and wall thickness affect the mechanical properties after expansion. Thus the quantitative laws of the expansion driving force, internal pressure resistance, and external squeezing resistance under different variables are summarized. To ensure the integrity of the reinforced wellbore, the expansion ratio should not exceed 12.7%. The current study lays a theoretical basis and technical support for optimizing SET and preventing downhole accidents.
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      Effect of Expansion Ratio and Wall Thickness on Large-Diameter Solid Expandable Tubular After Expansion

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    contributor authorShi, Changshuai
    contributor authorChen, Kailin
    contributor authorZhu, Xiaohua
    contributor authorCheng, Feilong
    contributor authorQi, Yuekui
    contributor authorLi, Jianan
    date accessioned2022-02-05T21:59:16Z
    date available2022-02-05T21:59:16Z
    date copyright3/22/2021 12:00:00 AM
    date issued2021
    identifier issn0094-9930
    identifier otherpvt_143_05_051305.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4276694
    description abstractThe large-diameter solid expandable tubular (SET) with a smaller wall thickness faces the risk of internal pressure burst and external squeeze collapse in repairing damaged casing well. The internal pressure and external squeezing resistance calculation of the tubes using the analytical method require many expansion experiments and postexpansion tensile experiments, resulting in high costs and low efficiency. This paper gives a set of laboratory expansion and postexpansion performance test, which is based on the laboratory experiment and mechanical properties of material expansion. Two materials are studied: 316 L and 20G. Then it analyses the error and causes of the error in the traditional analytical algorithm. Besides, it establishes an accurate finite element (FE) model to study the quantitative influence of expansion ratio and wall thickness on the burst strengths and collapse strengths of the tube. The results show that the toughness and hardening ratio of 316 L is better than 20G at the same expansion ratio. The numerical simulation results of the model can effectively simulate the expansion process and the mechanical properties of SET in good agreement with the laboratory test results. The expansion ratio and wall thickness affect the mechanical properties after expansion. Thus the quantitative laws of the expansion driving force, internal pressure resistance, and external squeezing resistance under different variables are summarized. To ensure the integrity of the reinforced wellbore, the expansion ratio should not exceed 12.7%. The current study lays a theoretical basis and technical support for optimizing SET and preventing downhole accidents.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleEffect of Expansion Ratio and Wall Thickness on Large-Diameter Solid Expandable Tubular After Expansion
    typeJournal Paper
    journal volume143
    journal issue5
    journal titleJournal of Pressure Vessel Technology
    identifier doi10.1115/1.4050220
    journal fristpage051305-1
    journal lastpage051305-8
    page8
    treeJournal of Pressure Vessel Technology:;2021:;volume( 143 ):;issue: 005
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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