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Krishnendu Shekhar
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Tsunami-like wave forces on an elevated coastal structure: Effects of flow shielding and channeling
AO Winter, MS Alam, K Shekhar, MR Motley, MO Eberhard, AR Barbosa, ...
Journal of Waterway, Port, Coastal, and Ocean Engineering 146 (4), 04020021, 2020
302020
Tsunami-like wave-induced lateral and uplift pressures and forces on an elevated coastal structure
MS Alam, AO Winter, G Galant, K Shekhar, AR Barbosa, MR Motley, ...
Journal of Waterway, Port, Coastal, and Ocean Engineering 146 (4), 04020008, 2020
262020
Conceptual evaluation of tsunami debris field damming and impact forces
K Shekhar, AO Winter, MS Alam, P Arduino, GR Miller, MR Motley, ...
Journal of Waterway, Port, Coastal, and Ocean Engineering 146 (6), 04020039, 2020
162020
Modeling tsunami induced debris impacts on bridge structures using the material point method
WC Yang, K Shekhar, P Arduino, P Mackenzie-Helnwein, G Miller
Procedia Engineering 175, 175-181, 2017
62017
Experimental modeling of wave forces and hydrodynamics on elevated coastal structures subject to waves, surge or tsunamis: the effect of breaking, shielding and debris
P Lomonaco, MS Alam, P Arduino, A Barbosa, DT Cox, T Do, M Eberhard, ...
Coastal engineering: proceedings of the... international conference …, 2018
52018
Probabilistic assessment of tsunami forces on coastal structures
M Motley, M Eberhard, P Arduino, A Barbosa, A Winter, T Maddux, ...
DesignSafe-CI, 2019
42019
NHERI Debris Impact Experiments
P Arduino, M Motley, M Eberhard, D Cox, A Barbosa, P Lomonaco
DesignSafe-CI, Dataset. doi 10, 2018
22018
Material Point Method (MPM) Analysis of Hydrodynamic Impact Problems Involving Embedded Solids
K Shekhar, WC Yang, P Arduino, P Mackenzie-Helnwein, G Miller
Mecánica Computacional 34 (4), 75-88, 2016
2016
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Articles 1–8