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Gabriel Weymouth
Gabriel Weymouth
Ship Hydromechanics, TU Delft
Verified email at tudelft.nl - Homepage
Title
Cited by
Cited by
Year
Conservative Volume-of-Fluid method for free-surface simulations on Cartesian-grids
GD Weymouth, DKP Yue
Journal of Computational Physics 229 (8), 2853-2865, 2010
2372010
RANS computational fluid dynamics predictions of pitch and heave ship motions in head seas
GD Weymouth, RV Wilson, F Stern
Journal of ship research 49 (02), 80-97, 2005
158*2005
Boundary data immersion method for Cartesian-grid simulations of fluid-body interaction problems
GD Weymouth, DKP Yue
Journal of Computational Physics, 2011
1322011
Biomimetic survival hydrodynamics and flow sensing
MS Triantafyllou, GD Weymouth, J Miao
Annual Review of Fluid Mechanics 48, 1-24, 2016
982016
Performance augmentation mechanism of in-line tandem flapping foils
LE Muscutt, GD Weymouth, B Ganapathisubramani
Journal of Fluid Mechanics 827, 484-505, 2017
772017
Ultra-fast escape of a deformable jet-propelled body
GD Weymouth, MS Triantafyllou
Journal of Fluid Mechanics 721, 367-385, 2013
752013
Accurate Cartesian-grid simulations of near-body flows at intermediate Reynolds numbers
AP Maertens, GD Weymouth
Computer Methods in Applied Mechanics and Engineering 283, 106-129, 2015
622015
Ultra-fast escape maneuver of an octopus-inspired robot
GD Weymouth, V Subramaniam, MS Triantafyllou
Bioinspiration & biomimetics 10 (1), 016016, 2015
592015
A resonant squid-inspired robot unlocks biological propulsive efficiency
T Bujard, F Giorgio-Serchi, GD Weymouth
Science Robotics 6 (50), eabd2971, 2021
492021
An application of cartesian-grid and volume-of-fluid methods to numerical ship hydrodynamics
DG Dommermuth, TT O'Shea, DC Wyatt, T Ratcliffe, GD Weymouth, ...
SCIENCE APPLICATIONS INTERNATIONAL CORP SAN DIEGO CA, 2007
492007
The boundary data immersion method for compressible flows with application to aeroacoustics
SC Schlanderer, GD Weymouth, RD Sandberg
Journal of computational Physics 333, 440-461, 2017
472017
Hydrodynamic object recognition using pressure sensing
R Bouffanais, GD Weymouth, DKP Yue
Proceedings of the Royal Society A: Mathematical, Physical and Engineering …, 2011
472011
The four-flipper swimming method of plesiosaurs enabled efficient and effective locomotion
LE Muscutt, G Dyke, GD Weymouth, D Naish, C Palmer, ...
Proceedings of the Royal Society B: Biological Sciences 284 (1861), 20170951, 2017
432017
Flow control with rotating cylinders
JC Schulmeister, JM Dahl, GD Weymouth, MS Triantafyllou
Journal of Fluid Mechanics 825, 743-763, 2017
432017
Unsteady dynamics of rapid perching manoeuvres
DT Polet, DE Rival, GD Weymouth
Journal of Fluid Mechanics 767, 323-341, 2015
342015
The numerical simulation of ship waves using cartesian-grid and volume-of-fluid methods
DG Dommermuth, TT O’Shea, DC Wyatt, M Sussman, GD Weymouth, ...
Proc. 26th Symp. On Naval Hydro, 2006
34*2006
Global vorticity shedding for a shrinking cylinder
GD Weymouth, MS Triantafyllou
Journal of Fluid Mechanics 702 (1), 470-487, 2012
322012
Physics-based learning models for ship hydrodynamics
GD Weymouth, DKP Yue
Journal of Ship Research 57 (01), 1-12, 2013
302013
Whisker-like geometries and their force reduction properties
H Hans, J Miao, G Weymouth, M Triantafyllou
2013 MTS/IEEE OCEANS-Bergen, 1-7, 2013
292013
Influence of three-dimensionality on propulsive flapping
AN Zurman-Nasution, B Ganapathisubramani, GD Weymouth
Journal of Fluid Mechanics 886, A25, 2020
272020
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