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    Using an Improved Response-Surface Method to Enhance the Precision of the Traditional Response Method in Bridges

    Source: Practice Periodical on Structural Design and Construction:;2023:;Volume ( 028 ):;issue: 004::page 04023044-1
    Author:
    Haoyue Qiao
    ,
    Liang Tang
    ,
    Fasheng Zhang
    ,
    Yongbo Zhang
    ,
    Ding Hu
    ,
    Hang Zhao
    DOI: 10.1061/PPSCFX.SCENG-1235
    Publisher: ASCE
    Abstract: To improve the precision of traditional response surface methods, an updated response surface method is proposed. Combining the updated response surface method and fmincon algorithm, the accuracy of the finite-element model of a certain prestressed concrete continuous beam bridge is improved using the data of in situ dynamic testing. First, on the basis of specific configurations of a certain prestressed concrete continuous beam bridge, three specific design parameters that need to be updated were preselected. Eigenvalues of 15 samples were calculated using the central composite design method. The response surface method was updated by obtaining the internal relationship between specific design parameters and response eigenvalues. Fifteen response eigenvalues were calculated by finite-element analysis. Using the lsqcurvefit algorithm, undetermined coefficients of the updated response surface model were calculated, and the updated design parameters and response eigenvalues were obtained using the fmincon algorithm from the MATLAB toolbox. Numerical examples show that the updated design parameters and response eigenvalues are reasonable when compared with original parameters. Using the updated response surface method and fmincon algorithm, the numerical model of a prestressed concrete continuous beam bridge was updated effectively.
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      Using an Improved Response-Surface Method to Enhance the Precision of the Traditional Response Method in Bridges

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4296349
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    • Journal of Structural Design and Construction Practice

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    contributor authorHaoyue Qiao
    contributor authorLiang Tang
    contributor authorFasheng Zhang
    contributor authorYongbo Zhang
    contributor authorDing Hu
    contributor authorHang Zhao
    date accessioned2024-04-27T20:58:02Z
    date available2024-04-27T20:58:02Z
    date issued2023/11/01
    identifier other10.1061-PPSCFX.SCENG-1235.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4296349
    description abstractTo improve the precision of traditional response surface methods, an updated response surface method is proposed. Combining the updated response surface method and fmincon algorithm, the accuracy of the finite-element model of a certain prestressed concrete continuous beam bridge is improved using the data of in situ dynamic testing. First, on the basis of specific configurations of a certain prestressed concrete continuous beam bridge, three specific design parameters that need to be updated were preselected. Eigenvalues of 15 samples were calculated using the central composite design method. The response surface method was updated by obtaining the internal relationship between specific design parameters and response eigenvalues. Fifteen response eigenvalues were calculated by finite-element analysis. Using the lsqcurvefit algorithm, undetermined coefficients of the updated response surface model were calculated, and the updated design parameters and response eigenvalues were obtained using the fmincon algorithm from the MATLAB toolbox. Numerical examples show that the updated design parameters and response eigenvalues are reasonable when compared with original parameters. Using the updated response surface method and fmincon algorithm, the numerical model of a prestressed concrete continuous beam bridge was updated effectively.
    publisherASCE
    titleUsing an Improved Response-Surface Method to Enhance the Precision of the Traditional Response Method in Bridges
    typeJournal Article
    journal volume28
    journal issue4
    journal titlePractice Periodical on Structural Design and Construction
    identifier doi10.1061/PPSCFX.SCENG-1235
    journal fristpage04023044-1
    journal lastpage04023044-8
    page8
    treePractice Periodical on Structural Design and Construction:;2023:;Volume ( 028 ):;issue: 004
    contenttypeFulltext
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