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Tom Bruce
Tom Bruce
Verified email at ed.ac.uk
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Cited by
Cited by
Year
EurOtop wave overtopping of sea defences and related structures: assessment manual
T Pullen, NWH Allsop, T Bruce, A Kortenhaus, H Schüttrumpf, ...
Die Küste, 2007
3722007
Breaking wave loads at vertical seawalls and breakwaters
G Cuomo, W Allsop, T Bruce, J Pearson
Coastal Engineering 57 (4), 424-439, 2010
2792010
EurOtop-Manual on wave overtopping of sea defences and related structures. An overtopping manual largely based on European research, but for worldwide application.
JW Van der Meer, NWH Allsop, T Bruce, J De Rouck, A Kortenhaus, ...
-, 2016
235*2016
Overtopping performance of different armour units for rubble mound breakwaters
T Bruce, JW Van der Meer, L Franco, JM Pearson
Coastal Engineering 56 (2), 166-179, 2009
1512009
New physical insights and design formulas on wave overtopping at sloping and vertical structures
J van der Meer, T Bruce
Journal of Waterway, Port, Coastal, and Ocean Engineering 140 (6), 04014025, 2014
1382014
Large-scale experiments on the behaviour of a generalised Oscillating Water Column under random waves
A Viviano, S Naty, E Foti, T Bruce, W Allsop, D Vicinanza
Renewable Energy 99, 875-887, 2016
1132016
Wave impact on a wall using pressure-impulse theory. I: trapped air
DJ Wood, DH Peregrine, T Bruce
Journal of waterway, port, coastal, and ocean engineering 126 (4), 182-190, 2000
932000
Assessment of boundary-element method for modelling a free-floating sloped wave energy device. Part 2: Experimental validation
GS Payne, JRM Taylor, T Bruce, P Parkin
Ocean Engineering 35 (3-4), 342-357, 2008
902008
Influence of parapets and recurves on wave overtopping and wave loading of complex vertical walls
A Kortenhaus, J Pearson, T Bruce, NWH Allsop, JW Van der Meer
Coastal Structures 2003, 369-381, 2003
842003
Assessment of boundary-element method for modelling a free-floating sloped wave energy device. Part 1: Numerical modelling
GS Payne, JRM Taylor, T Bruce, P Parkin
Ocean Engineering 35 (3-4), 333-341, 2008
782008
Wave overtopping at vertical and steep seawalls
W Allsop, T Bruce, J Pearson, P Besley
Proceedings of the Institution of Civil Engineers-Maritime Engineering 158 …, 2005
762005
Flow field visualization of sediment-laden flow using ultrasonic imaging
M Crapper, T Bruce, C Gouble
Dynamics of Atmospheres and Oceans 31 (1-4), 233-245, 2000
722000
Effectiveness of recurve walls in reducing wave overtopping on seawalls and breakwaters
JON PEARSON, TOM BRUCE, W ALLSOP, A KORTENHAUS, ...
Coastal Engineering 2004: (In 4 Volumes), 4404-4416, 2005
712005
Field and laboratory measurements of mean overtopping discharges and spatial distributions at vertical seawalls
T Pullen, W Allsop, T Bruce, J Pearson
Coastal Engineering 56 (2), 121-140, 2009
702009
Violent wave overtopping–measurements at large and small scale
J Pearson, T Bruce, W Allsop, X Gironella
Coastal Engineering 2002: Solving Coastal Conundrums, 2227-2238, 2003
702003
Conjectures on the Failure of the OWC Breakwater at Mutriku
E Medina-Lopez, W Allsop, A Dimakopoulos, T Bruce
Coastal Structures and Solutions to Coastal Disasters Joint Conference 2015 …, 2015
612015
Particle image velocimetry (PIV) in the coastal engineering laboratory
CA Greated, DJ Skyner, T Bruce
Coastal Engineering 1992, 212-225, 1992
611992
The effects of oblique waves and currents on the loadings and performance of tidal turbines
R Martinez, GS Payne, T Bruce
Ocean Engineering 164, 55-64, 2018
582018
A loading model for an OWC caisson based upon large-scale measurements
KA Pawitan, AS Dimakopoulos, D Vicinanza, W Allsop, T Bruce
Coastal engineering 145, 1-20, 2019
562019
Variation of loads on a three-bladed horizontal axis tidal turbine with frequency and blade position
GS Payne, T Stallard, R Martinez, T Bruce
Journal of Fluids and Structures 83, 156-170, 2018
562018
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Articles 1–20