Experimental application of FRF-based model updating approach to estimate soil mass and stiffness mobilised under pile impact tests
Author:
Funder
the Royal Irish Academy
Publisher
Elsevier BV
Subject
Soil Science,Geotechnical Engineering and Engineering Geology,Civil and Structural Engineering
Reference58 articles.
1. Seismic soil–pile–structure kinematic and inertial interaction—a new beam approach;Kampitsis;Soil Dynam Earthq Eng,2013
2. Seismic soil-pile-structure interaction experiments and analysis;Boulanger;J Geotech Geoenviron Eng,1999
3. Probabilistic examination of the change in eigenfrequencies of an offshore wind turbine under progressive scour incorporating soil spatial variability;Prendergast;Mar Struct,2018
4. A method for identification of an effective Winkler foundation for large-diameter offshore wind turbine support structures based on in-situ measured small-strain soil response and 3D modelling;Versteijlen;Eng Struct,2016
5. Generalized dynamic Winkler model for nonlinear soil–structure interaction analysis;Allotey;Can Geotech J,2008
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