Earthquake-Induced Liquefaction around Marine Structures

Author:

Sumer B. Mutlu12345,Ansal Atilla12345,Cetin K. Onder12345,Damgaard Jesper12345,Gunbak A. Riza12345,Hansen Niels-Erik Ottesen12345,Sawicki Andrzej12345,Synolakis Costas E.12345,Yalciner Ahmet Cevdet12345,Yuksel Yalcin12345,Zen Kouki12345

Affiliation:

1. Professor, MEK, Coastal, Maritime, and Structural Engineering Section, Technical Univ. of Denmark, Building 403, Lyngby DK-2800, Denmark (corresponding author). E-mail: bms@mek.dtu.dk

2. Professor, Kandilli Observatory and Earthquake Research Center, Bogazici Univ., Cengelkoy 82110, Istanbul, Turkey.

3. Associate Professor, Dept. of Civil Engineering, METU, Ankara 06531, Turkey.

4. General Manager, Industrial and Infrastructure (Middle East), WorleyParsons, P.O. Box 44169, Abu Dhabi, UAE; formerly, Project Manager, HR Wallingford Ltd.

5. Professor, Technical Adviser for Marine Works, STFA Construction Co., Altunizade Uskudar, Istanbul 81190, Turkey.

Publisher

American Society of Civil Engineers (ASCE)

Subject

Ocean Engineering,Water Science and Technology,Civil and Structural Engineering

Reference118 articles.

1. Numerical Simulation of Liquefaction-Induced Deformations

2. Bartlett S. F. and Youd T. L. (1992). “Empirical analysis of horizontal ground displacement generated by liquefaction-induced lateral spreads.” Technical Rep. No. NCEER-92-0021 National Center for Earthquake Engineering Research State Univ. of New York Buffalo N.Y. 5-14–5-15.

3. Empirical Prediction of Liquefaction-Induced Lateral Spread

4. Amplitude patterns of tsunami waves from submarine earthquakes

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