activity
20182022
most citedA dataset of direct observations of sea ice drift and waves in ice

3 citations · 4 across the 3 of their papers we have counts for

collaborators

6 papers

physics.geo-ph20223 cited

A dataset of direct observations of sea ice drift and waves in ice

Jean Rabault, Malte Müller, Joey Voermans +25

Variability in sea ice conditions, combined with strong couplings to the atmosphere and the ocean, lead to a broad range of complex sea ice dynamics. More in-situ measurements are…

physics.ins-det2022

OpenMetBuoy-V2021: an easy-to-build, affordable, customizable, open source instrument for oceanographic measurements of drift and waves in sea ice and the open ocean

Jean Rabault, Takehiko Nose, Gaute Hope +17

There is a wide consensus within the polar science, meteorology, and oceanography communities that more in-situ observations of the ocean, atmosphere, and sea ice, are required to…

physics.ao-ph20201 cited

Evaluating the leeway coefficient for different ocean drifters using operational models

Graig Sutherland, Nancy Soontiens, Fraser Davidson +9

The water following characteristics of six different drifter types are investigated using two different operational marine environmental prediction systems: one produced by Environ…

physics.ao-ph2020

A comparison of wave observations in the Arctic marginal ice zone with spectral models

Trygve K. Løken, Jean Rabault, Erin E. Thomas +4

Increased economic activity and research interest in the Arctic raise the need for better wave forecasts in the marginal ice zone (MIZ). Mathematical and numerical models of wave p…

physics.flu-dyn2018

Experiments on wave propagation in grease ice: combined wave gauges and PIV measurements

Jean Rabault, Graig Sutherland, Atle Jensen +2

Water wave attenuation by grease ice is a key mechanism for the polar regions, as waves in ice influence many phenomena such as ice drift, ice breaking, and ice formation. However,…

physics.ao-ph2018

A two layer model for wave dissipation in sea ice

Graig Sutherland, Jean Rabault, Kai H. Christensen +1

Sea ice is highly complex due to the inhomogeneity of the physical properties (e.g. temperature and salinity) as well as the permeability and mixture of water and a matrix of sea i…