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Mike Meylan
Mike Meylan
Associate Professor, The University of Newcastle
Verified email at newcastle.edu.au - Homepage
Title
Cited by
Cited by
Year
Storm-induced sea-ice breakup and the implications for ice extent
AL Kohout, MJM Williams, SM Dean, MH Meylan
Nature 509 (7502), 604-607, 2014
2522014
The response of ice floes to ocean waves
M Meylan, VA Squire
Journal of Geophysical Research: Oceans 99 (C1), 891-900, 1994
2321994
An elastic plate model for wave attenuation and ice floe breaking in the marginal ice zone
AL Kohout, MH Meylan
Journal of Geophysical Research: Oceans 113 (C9), 2008
1862008
In situ measurements and analysis of ocean waves in the Antarctic marginal ice zone
MH Meylan, LG Bennetts, AL Kohout
Geophysical Research Letters 41 (14), 5046-5051, 2014
1512014
Response of a circular ice floe to ocean waves
MH Meylan, VA Squire
Journal of Geophysical Research: Oceans 101 (C4), 8869-8884, 1996
1481996
Ca-and La-substitution in YBa2Cu3O7− ξ, Y2Ba4Cu7O15− ξ and YBa2Cu4O8
RG Buckley, DM Pooke, JL Tallon, MR Presland, NE Flower, MP Staines, ...
Physica C: Superconductivity 174 (4-6), 383-393, 1991
1101991
Overview of the arctic sea state and boundary layer physics program
J Thomson, S Ackley, F Girard‐Ardhuin, F Ardhuin, A Babanin, G Boutin, ...
Journal of Geophysical Research: Oceans 123 (12), 8674-8687, 2018
1062018
Wave response of an ice floe of arbitrary geometry
MH Meylan
Journal of Geophysical Research: Oceans 107 (C1), 5-1-5-11, 2002
1042002
Emerging trends in the sea state of the Beaufort and Chukchi seas
J Thomson, Y Fan, S Stammerjohn, J Stopa, WE Rogers, F Girard-Ardhuin, ...
Ocean Modelling 105, 1-12, 2016
882016
Relating wave attenuation to pancake ice thickness, using field measurements and model results
MJ Doble, G De Carolis, MH Meylan, JR Bidlot, P Wadhams
Geophysical Research Letters 42 (11), 4473-4481, 2015
872015
Water-wave scattering by submerged elastic plates
MH Meylan, MA Peter
The Quarterly Journal of Mechanics & Applied Mathematics 62 (3), 321-344, 2009
872009
Dispersion relations, power laws, and energy loss for waves in the marginal ice zone
MH Meylan, LG Bennetts, JEM Mosig, WE Rogers, MJ Doble, MA Peter
Journal of Geophysical Research: Oceans 123 (5), 3322-3335, 2018
862018
The linear wave response of a floating thin plate on water of variable depth
CD Wang, MH Meylan
Applied Ocean Research 24 (3), 163-174, 2002
862002
Toward realism in modeling ocean wave behavior in marginal ice zones
MH Meylan, VA Squire, C Fox
Journal of Geophysical Research: Oceans 102 (C10), 22981-22991, 1997
801997
Linear water wave propagation through multiple floating elastic plates of variable properties
AL Kohout, MH Meylan, S Sakai, K Hanai, P Leman, D Brossard
Journal of fluids and structures 23 (4), 649-663, 2007
772007
Wave scattering by a circular elastic plate in water of finite depth: a closed form solution
MA Pete, MH Meylan, H Chung
International Journal of Offshore and Polar Engineering 14 (02), 2004
76*2004
A three‐dimensional model of wave attenuation in the marginal ice zone
LG Bennetts, MA Peter, VA Squire, MH Meylan
Journal of Geophysical Research: Oceans 115 (C12), 2010
742010
A linear Boltzmann equation to model wave scattering in the marginal ice zone
MH Meylan, D Masson
Ocean Modelling 11 (3-4), 417-427, 2006
662006
Water-wave scattering and energy dissipation by a floating porous elastic plate in three dimensions
MH Meylan, LG Bennetts, MA Peter
Wave Motion 70, 240-250, 2017
642017
Modelling water wave overwash of a thin floating plate
DM Skene, LG Bennetts, MH Meylan, A Toffoli
Journal of Fluid Mechanics 777, 2015
642015
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