Review on tsunami–bridge interaction
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[1] Yan Han,et al. A novel combined countermeasure of fairing-openings for mitigating extreme wave forces on typical coastal low-lying bridges , 2022, Ocean Engineering.
[2] Liquan Xie,et al. Study on dynamic stability for the superlong pile foundation of marine engineering structures in service , 2022, Structures.
[3] Guoji Xu,et al. A novel tri-semicircle shaped submerged breakwater for mitigating wave loads on coastal bridges part I: Efficacy , 2022, Ocean Engineering.
[4] L. Deng,et al. CFD investigations of tsunami-induced scour around bridge piers , 2022, Ocean Engineering.
[5] M. Hayatdavoodi,et al. Bore Impact on Decks of Coastal Structures , 2022, Journal of Waterway, Port, Coastal, and Ocean Engineering.
[6] Tomoaki Nakamura,et al. Mechanism of Tsunami-Induced Erosion of Bridge-Abutment Backfill and Its Countermeasures , 2021, Water.
[7] H. Schüttrumpf,et al. Tsunami-like flow induced forces on the structure: Dependence of the hydrodynamic force coefficients on Froude number and flow channel width in quasi-steady flow phase , 2021, Coastal Engineering.
[8] Guoji Xu,et al. A comparative study on lateral displacements of movable T-deck and Box-deck under solitary waves , 2021, Structures.
[9] You Dong,et al. Probabilistic performance of coastal bridges under hurricane waves using experimental and 3D numerical investigations , 2021 .
[10] Gang Wu,et al. Probabilistic multi-hazard fragility analysis of RC bridges under earthquake-tsunami sequential events , 2021, Engineering Structures.
[11] S. Harish,et al. Tsunami-like flow induced force on the structure: Prediction formulae for the horizontal force in quasi-steady flow phase , 2021 .
[12] Haizhong Wang,et al. Multihazard Damage and Loss Assessment of Bridges in a Highway Network Subjected to Earthquake and Tsunami Hazards , 2021 .
[13] A. Shamseldin,et al. Experimental investigation of tsunami bore-induced forces and pressures on skewed box section bridges , 2021 .
[14] B. Zhu,et al. Comparative Study of Tsunami-Like Wave-Induced Forces on Medium-Scale Models of Box Girder and T-Girder Bridges , 2021 .
[15] K. Qu,et al. Numerical investigation on hydrodynamic load of coastal bridge deck under joint action of solitary wave and wind , 2020 .
[16] Wanli Yang,et al. Study on anti-tsunami optimization design of bridge pier: A new type bridge pier , 2020 .
[17] S. Yim,et al. Tsunami Loads on a Representative Coastal Bridge Deck: Experimental Study and Validation of Design Equations , 2020 .
[18] Haoyu Jiang,et al. Numerical investigation of tsunami wave impacts on different coastal bridge decks using immersed boundary method , 2020 .
[19] T. Sahoo,et al. Wave interaction with a submerged floating tunnel in the presence of a bottom mounted submerged porous breakwater , 2020 .
[20] T. Rossetto,et al. Fragility functions for a reinforced concrete structure subjected to earthquake and tsunami in sequence , 2020, Engineering Structures.
[21] Yini Wang,et al. Numerical investigation on tsunami wave mitigation on forest sloping beach , 2020, Acta Oceanologica Sinica.
[22] H. Tang,et al. Numerical study on hydrodynamic load of real-world tsunami wave at highway bridge deck using a coupled modeling system , 2019, Ocean Engineering.
[23] L. Duan,et al. Tsunami Forces on a Coastal Bridge Deck with a Box Girder , 2019, Journal of Bridge Engineering.
[24] Hui Li,et al. Experimental Investigation of Wave Forces on Coastal Bridge Decks Subjected to Oblique Wave Attack , 2019, Journal of Bridge Engineering.
[25] Michael H. Scott,et al. Multihazard Earthquake and Tsunami Effects on Soil–Foundation–Bridge Systems , 2019, Journal of Bridge Engineering.
[26] K. Qu,et al. Numerical Study on the Hydrodynamic Characteristics of Submarine Pipelines under the Impact of Real-World Tsunami-Like Waves , 2019, Water.
[27] K. Fujisawa,et al. Development of Resilient Breakwater against Earthquake and Tsunami , 2019, International Journal of Geomechanics.
[28] Marc O. Eberhard,et al. Tsunami-Like Wave Loading of Individual Bridge Components , 2018 .
[29] B. Sumer,et al. Tsunami Induced Scour Around Monopile Foundations , 2017 .
[30] T. Lund,et al. Tsunami‐driven gravity waves in the presence of vertically varying background and tidal wind structures , 2017 .
[31] M. Sarfaraz,et al. SPH numerical simulation of tsunami wave forces impinged on bridge superstructures , 2017 .
[32] H. Ge,et al. Accumulative response of large offshore steel bridge under severe earthquake and ship impact due to earthquake-induced tsunami flow , 2017 .
[33] K. Qu,et al. Numerical investigation of tsunami-like wave hydrodynamic characteristics and its comparison with solitary wave , 2017 .
[34] Guoji Xu,et al. Countermeasure of Air Venting Holes in the Bridge Deck–Wave Interaction under Solitary Waves , 2017 .
[35] Wen-Chia Yang,et al. Modeling Tsunami Induced Debris Impacts on Bridge Structures using the Material Point Method , 2017 .
[36] Robert A. Dalrymple,et al. Numerical study on mitigating tsunami force on bridges by an SPH model , 2016 .
[37] S. Schimmels,et al. Tsunami evolution and run-up in a large scale experimental facility , 2016 .
[38] Marc O. Eberhard,et al. Tsunami-Induced Forces on Skewed Bridges , 2016 .
[39] David R. Fuhrman,et al. Numerical simulation of tsunami-scale wave boundary layers , 2016 .
[40] R. Dalrymple,et al. SPH modeling of dynamic impact of tsunami bore on bridge piers , 2015 .
[41] Akira Hosoda,et al. Numerical Collapse Analysis of Tsuyagawa Bridge Damaged by Tohoku Tsunami , 2015 .
[42] M. Azadbakht,et al. Simulation and Estimation of Tsunami Loads on Bridge Superstructures , 2015 .
[43] Jeremy D. Bricker,et al. Contribution of Trapped Air, Deck Superelevation, and Nearby Structures to Bridge Deck Failure during a Tsunami , 2014 .
[44] I. Deguchi,et al. CHARACTERISTICS OF WAVE PRESSURE AND FLUID FORCE ACTING ON BRIDGE BEAM BY TSUNAMI , 2013 .
[45] N. Tanaka,et al. Numerical simulation estimating effects of tree density distribution in coastal forest on tsunami mitigation , 2012 .
[46] Guangfeng Zhang,et al. An Experimental Study on Countermeasure for Mitigating Tsunami Effect on Highway Bridge , 2012 .
[47] Mehrdad Bozorgnia,et al. Computational fluid dynamic analysis of highway bridge superstructures exposed to hurricane waves , 2012 .
[48] Christopher Higgins,et al. Large-scale laboratory observations of wave forces on a highway bridge superstructure , 2011 .
[49] Tiziana Rossetto,et al. Physical modelling of tsunami using a new pneumatic wave generator , 2011 .
[50] Kazuo Konagai,et al. Bridges washed away by tunami in Minamisanriku, Miyagi Prefecture in the March 11th 2011 Great East Japan Earthquake (特集 耐震構造学研究グループ(ERS) 東日本大震災 : 巨大地震の脅威と教訓) , 2011 .
[51] Gaku Shoji,et al. Evaluation of Tsunami Fluid Force Acting on a Bridge Deck Subjected to Breaker Bores , 2011 .
[52] Tatsuo Ohmachi,et al. PERFORMANCE OF BRIDGES WITH SOLID AND PERFORATED PARAPETS IN RESISTING TSUNAMI ATTACKS , 2010 .
[53] Per A. Madsen,et al. On the solitary wave paradigm for tsunamis , 2008 .
[54] P. Lukkunaprasit,et al. TSUNAMI WAVE LOADING ON A BRIDGE DECK WITH PERFORATIONS , 2008 .
[55] F. Imamura,et al. A numerical model for the transport of a boulder by tsunami , 2008 .
[56] Hirokazu Iemura,et al. EXPERIMENTS OF TSUNAMI FORCE ACTING ON BRIDGE MODELS , 2007 .
[57] Hubert Chanson,et al. Tsunami Surges on Dry Coastal Plains: Application of Dam Break Wave Equations , 2006 .