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Inertial and Liquefaction-Induced Kinematic Demands on a Pile-Supported Wharf: Physical Modeling
Results of a centrifuge test on a pile-supported wharf were used to investigate the time-, depth-, and row-dependent nature of kinematic and inertial loading on wharf piles in sloping rockfill. P-y models were calibrated against recorded bending moments in different piles and different depths. It was found that full kinematic demands and full superstructure inertia should be combined to estimate bending moments at pile head and shallow depths (less than 10 diameters below the ground surface). On the contrary, it was found that applying full kinematic demands alone was adequate to estimate pile bending moments at large depths (greater than 10 diameters deep).
Inertial and Liquefaction-Induced Kinematic Demands on a Pile-Supported Wharf: Physical Modeling
Results of a centrifuge test on a pile-supported wharf were used to investigate the time-, depth-, and row-dependent nature of kinematic and inertial loading on wharf piles in sloping rockfill. P-y models were calibrated against recorded bending moments in different piles and different depths. It was found that full kinematic demands and full superstructure inertia should be combined to estimate bending moments at pile head and shallow depths (less than 10 diameters below the ground surface). On the contrary, it was found that applying full kinematic demands alone was adequate to estimate pile bending moments at large depths (greater than 10 diameters deep).
Inertial and Liquefaction-Induced Kinematic Demands on a Pile-Supported Wharf: Physical Modeling
Souri, Milad (Autor:in) / Khosravifar, Arash (Autor:in) / Dickenson, Stephen E. (Autor:in) / Schlechter, Scott (Autor:in) / McCullough, Nason (Autor:in)
Geotechnical Earthquake Engineering and Soil Dynamics V ; 2018 ; Austin, Texas
07.06.2018
Aufsatz (Konferenz)
Elektronische Ressource
Englisch
Inertial and Liquefaction-Induced Kinematic Demands on a Pile-Supported Wharf: Physical Modeling
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