Comprehensive aircraft observations are used to characterise surface roughness over the Arctic marginal ice zone (MIZ) and consequently make recommendations for the parametrisation of surface momentum exchange in the MIZ. These observations were gathered in the Barents Sea and Fram Strait from two aircraft as part of the Aerosol–Cloud Coupling And Climate Interactions in the Arctic (ACCACIA) project. They represent a doubling of the total number of such aircraft observations currently available over the Arctic MIZ. The eddy covariance method is used to derive estimates of the 10 m neutral drag coefficient (<i>C</i><sub>DN10</sub>) from turbulent wind velocity measurements, and a novel method using albedo and surface temperature is...
A major source of uncertainty in both climate projections and seasonal forecasting of sea ice is ina...
Bulk flux algorithms are routinely used in climate and numerical weather prediction models to estima...
Sea ice topography significantly impacts turbulent energy/momentum exchange, e.g., atmospheric (wind...
Comprehensive aircraft observations are used to characterise surface roughness over the Arctic margi...
Comprehensive aircraft observations are used to characterise surface roughness over the Arctic margi...
Aircraft observations from two Arctic field campaigns are used to derive ice surface characteristics...
The interplay between sea ice concentration, sea ice roughness, ocean stratification, and momentum t...
The impact of a physically-based parameterization of atmospheric drag over the marginal-icezone (MIZ...
Aircraft observations from two Arctic field campaigns are used to characterize and model surface hea...
Aircraft observations from two Arctic field campaigns are used to characterize and model surface hea...
The summer East Greenland Sea marginal ice zone is a region characterized by extreme horizontal vari...
Turbulent surface fluxes of momentum and sensible and latent heat as well as surface temperature, a...
A new, simple parameterisation scheme for scalar (heat and moisture) exchange over sea ice and the m...
The Arctic is undergoing big changes, there has been a reduction in sea ice extent and an increase ...
The effect that sea ice topography has on the mo- mentum transfer between ice and atmosphere is not ...
A major source of uncertainty in both climate projections and seasonal forecasting of sea ice is ina...
Bulk flux algorithms are routinely used in climate and numerical weather prediction models to estima...
Sea ice topography significantly impacts turbulent energy/momentum exchange, e.g., atmospheric (wind...
Comprehensive aircraft observations are used to characterise surface roughness over the Arctic margi...
Comprehensive aircraft observations are used to characterise surface roughness over the Arctic margi...
Aircraft observations from two Arctic field campaigns are used to derive ice surface characteristics...
The interplay between sea ice concentration, sea ice roughness, ocean stratification, and momentum t...
The impact of a physically-based parameterization of atmospheric drag over the marginal-icezone (MIZ...
Aircraft observations from two Arctic field campaigns are used to characterize and model surface hea...
Aircraft observations from two Arctic field campaigns are used to characterize and model surface hea...
The summer East Greenland Sea marginal ice zone is a region characterized by extreme horizontal vari...
Turbulent surface fluxes of momentum and sensible and latent heat as well as surface temperature, a...
A new, simple parameterisation scheme for scalar (heat and moisture) exchange over sea ice and the m...
The Arctic is undergoing big changes, there has been a reduction in sea ice extent and an increase ...
The effect that sea ice topography has on the mo- mentum transfer between ice and atmosphere is not ...
A major source of uncertainty in both climate projections and seasonal forecasting of sea ice is ina...
Bulk flux algorithms are routinely used in climate and numerical weather prediction models to estima...
Sea ice topography significantly impacts turbulent energy/momentum exchange, e.g., atmospheric (wind...