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    Dynamics and Seismic Performance of Bridges with Rocking Piers of Nonconventional Configuration

    Source: Journal of Bridge Engineering:;2024:;Volume ( 029 ):;issue: 006::page 04024025-1
    Author:
    Ioannis M. Thomaidis
    ,
    Andreas J. Kappos
    ,
    Alfredo Camara
    DOI: 10.1061/JBENF2.BEENG-6311
    Publisher: ASCE
    Abstract: The present study focuses on the seismic response of bridges with rocking piers of nonconventional shape, combining the inherent benefits of rocking isolation and accelerated bridge construction. The governing equations of motion of bridge structures with different configurations of piers are derived, including the basic kinematics of the rocking motion, the equation of motion during rocking, as well as the intrinsic energy dissipation mechanisms of impact at the rocking interfaces and on the abutment backwalls. This analytical framework is based on dimensionless parameters that are related to the shape of the piers, and it is shown that the reduction of mass that is achieved with the nonconventional pier configurations leads to: (1) lower restoring effects compared to conventional piers that are rectangular in elevation; and (2) higher rocking stability based on rocking principles. The efficiency of the proposed pier configurations in a bridge with rocking pier isolation is examined for different levels of seismic action, also including earthquakes much stronger than the design earthquake in the area. It is demonstrated that the proposed nonconventional pier configurations can improve the seismic performance of rocking bridges, and at the same time bring benefits related to economic and sustainability aspects associated with a reduction in the use of construction materials.
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      Dynamics and Seismic Performance of Bridges with Rocking Piers of Nonconventional Configuration

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    https://yetl.yabesh.ir/yetl1/handle/yetl/4297268
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    contributor authorIoannis M. Thomaidis
    contributor authorAndreas J. Kappos
    contributor authorAlfredo Camara
    date accessioned2024-04-27T22:41:25Z
    date available2024-04-27T22:41:25Z
    date issued2024/06/01
    identifier other10.1061-JBENF2.BEENG-6311.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4297268
    description abstractThe present study focuses on the seismic response of bridges with rocking piers of nonconventional shape, combining the inherent benefits of rocking isolation and accelerated bridge construction. The governing equations of motion of bridge structures with different configurations of piers are derived, including the basic kinematics of the rocking motion, the equation of motion during rocking, as well as the intrinsic energy dissipation mechanisms of impact at the rocking interfaces and on the abutment backwalls. This analytical framework is based on dimensionless parameters that are related to the shape of the piers, and it is shown that the reduction of mass that is achieved with the nonconventional pier configurations leads to: (1) lower restoring effects compared to conventional piers that are rectangular in elevation; and (2) higher rocking stability based on rocking principles. The efficiency of the proposed pier configurations in a bridge with rocking pier isolation is examined for different levels of seismic action, also including earthquakes much stronger than the design earthquake in the area. It is demonstrated that the proposed nonconventional pier configurations can improve the seismic performance of rocking bridges, and at the same time bring benefits related to economic and sustainability aspects associated with a reduction in the use of construction materials.
    publisherASCE
    titleDynamics and Seismic Performance of Bridges with Rocking Piers of Nonconventional Configuration
    typeJournal Article
    journal volume29
    journal issue6
    journal titleJournal of Bridge Engineering
    identifier doi10.1061/JBENF2.BEENG-6311
    journal fristpage04024025-1
    journal lastpage04024025-14
    page14
    treeJournal of Bridge Engineering:;2024:;Volume ( 029 ):;issue: 006
    contenttypeFulltext
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