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Earthquake-induced liquefaction around marine structures

Synolakis Kostas, Damgaard, John, N. E. Ottesen , Waterway, Marcia J, Günbak, A. R

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URI: http://purl.tuc.gr/dl/dias/B10B958A-E0C1-4FAA-90AB-E47FDDF6275B
Year 2007
Type of Item Peer-Reviewed Journal Publication
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Bibliographic Citation B. M. Sumer, A. Ansal, K. O. Cetin, J. Damgaard, A. R. Gunbak, N. O. Hansen, A. Sawicki, C. E. Synolakis, A. Cevdet Yalciner, Y. Yuksel, K. Zen," Earthquake-induced liquefaction around marine structures ," J. Waterway, Port, Coastal, Ocean Eng., vol. 133,no.,pp. 55–82,2007.doi: 10.1061/(ASCE)0733-950X(2007)133:1(55) https://doi.org/10.1061/(ASCE)0733-950X(2007)133:1(55)
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Summary

This paper gives a state-of-the-art review of seismic-induced liquefaction with special reference to marine structures. The paper is organized in seven sections: (1) introduction; (2) seismic-induced liquefaction in which a general account of soil liquefaction is presented; (3) existing codes/guidelines regarding seismic-induced liquefaction and its implications for marine structures; (4) review of the Japanese experience, giving a brief history of earthquakes and design codes, describing the current design code/standard for port and harbor facilities including counter measures and remediation; (5) review of the liquefaction damage inflicted on marine structures in the 1999 Turkey Kocaeli Earthquake, including recommendations which draw on the lessons learned; (6) assessment of postliquefaction ground deformation (more specifically of lateral ground spreading); and (7) tsunamis and their impact. The present paper and the existing guidelines (CEN, ASCE, and PIANC) form a complementary source of information on earthquake-induced liquefaction with special reference to its impact on marine structures.

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