Biblio
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The Wiener-Hopf and residue calculus solutions for a submerged semi-infinite elastic plate. J. Eng. Maths. 75, 81-106 (2012).
The Wiener-Hopf and residue calculus solutions for a submerged semi-infinite elastic plate. Journal of Engineering Mathematics 75, (2012).
Wave–ice interactions in the marginal ice zone. Part 1: Theoretical foundations. Ocean Modelling 71, 81 - 91 (2013).
A waves-in-ice model with a floe-breaking parameterization. 27th Int. Workshop on Water Waves and Floating Bodies (2012).at <http://www.iwwwfb.org/Abstracts/iwwwfb27/iwwwfb27_53.pdf> Abstract
Wave-ice interactions in the marginal ice zone. Part 1: Theoretical foundations. Ocean Modelling 71, (2013).
Wave scattering at the sea-ice/ice-shelf transition with other applications. SIAM J. Appl. Math. 67, 938–959 (2007).
Wave propagation across an oblique crack in an ice sheet. Intl. J. Offshore Polar Engng. 12, 157–162 (2002).
Water wave transmission by an array of floating disks. Proceedings of the Royal Society. Mathematical, Physical and Engineering Sciences 471, (2015).
Sea Ice Physics and Modelling. Sea Ice Analysis and Forecasting - Towards an Increased Reliance on Automated Prediction Systems (2017).
Scattering of oblique ice-coupled waves by a pressure ridge. IAHR Symposium on Ice 1, 227–234 (2004).
The scattering of flexural-gravity waves by an ice field. International Journal of offshore and Polar Engineering 14, 161–168 (2004).
Scattering of flexural-gravity waves at the boundaries between three floating sheets with applications. J. Fluid Mech. 569, 113-140 (2006).
Safer Operations in Changing Ice-Covered Seas: Approaches and Perspectives. IUTAM Symposium on Physics and Mechanics of Sea Ice (2022).doi:10.1007/978-3-030-80439-8_12
Presentation and evaluation of the Arctic sea ice forecasting system neXtSIM-F. The Cryosphere 15, (2021).
Preliminary results from a two-dimensional model of wave-ice interactions in the Fram Strait. Arctic Technology Conference (2012).
Perfect transmission and asymptotic solutions for reflection of ice-coupled waves by inhomogeneities. Wave Motion 44, 371–384 (2007).
Oblique Scattering of Plane Flexural-Gravity Waves by Heterogeneities in Sea-Ice. Proc. R. Soc. Lon. A 460, 3469–3497 (2004).
A new brittle rheology and numerical framework for large-scale sea-ice models. Journal of Advances in Modeling Earth Systems 14, (2022).
Modelling the Arctic wave-affected marginal ice zone: a comparison with ICESat-2 observations. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences 380, (2022).