Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Sea Ice Growth, Melt and Dynamics in an Increasingly Marginal Arctic

View through CrossRef
As summer Arctic sea ice extent has retreated, the marginal ice zone (MIZ) has been widening and making up an increasing percentage of the summer Arctic sea ice. The MIZ is defined as the region of the ice cover that is influenced by waves, and for convenience here is defined as the region of​ the ice cover between ice concentrations of 15-80%. The MIZ is projected to become a larger percentage of the summer ice cover, as the Arctic transitions to ice free summers. We use​ a sea ice-mixed layer model that has a prognostic floe size distribution model including brittle fracture and form drag. The model has been compared and calibrated to FSD observations, satellite observation of sea ice extent and PIOMAS. We compare the processes of ice volume gain and loss in the ice pack to those in the​ MIZ to establish and contrast the relative importance of processes in the pack and MIZ, and the changes as the summer MIZ fraction increases and the amplitude of the seasonal sea ice growth/melt cycle increases. We compare the components of the sea ice volume budget in the 1980s and 2010s and then between the 2010s and the 2040s where almost the entirety summer sea ice cover has become MIZ.  
Title: Sea Ice Growth, Melt and Dynamics in an Increasingly Marginal Arctic
Description:
As summer Arctic sea ice extent has retreated, the marginal ice zone (MIZ) has been widening and making up an increasing percentage of the summer Arctic sea ice.
The MIZ is defined as the region of the ice cover that is influenced by waves, and for convenience here is defined as the region of​ the ice cover between ice concentrations of 15-80%.
The MIZ is projected to become a larger percentage of the summer ice cover, as the Arctic transitions to ice free summers.
 We use​ a sea ice-mixed layer model that has a prognostic floe size distribution model including brittle fracture and form drag.
The model has been compared and calibrated to FSD observations, satellite observation of sea ice extent and PIOMAS.
We compare the processes of ice volume gain and loss in the ice pack to those in the​ MIZ to establish and contrast the relative importance of processes in the pack and MIZ, and the changes as the summer MIZ fraction increases and the amplitude of the seasonal sea ice growth/melt cycle increases.
We compare the components of the sea ice volume budget in the 1980s and 2010s and then between the 2010s and the 2040s where almost the entirety summer sea ice cover has become MIZ.
 .

Related Results

Ground ice detection and implications for permafrost geomorphology
Ground ice detection and implications for permafrost geomorphology
Most permafrost contains ground ice, often as pore ice or thin veins or lenses of ice. In certain circumstance, larger bodies of ice can form, such as ice wedges, or massive lenses...
Sea-ice ridges - an understudied yet key component of the Arctic sea-ice system
Sea-ice ridges - an understudied yet key component of the Arctic sea-ice system
Sea-ice ridges (or more precisely, deformed ice) constitute a large fraction of the Arctic ice pack, however, estimates range broadly from 30 to 70%. Yet, we know disproportionally...
Seasonal Arctic sea ice predictability and prediction
Seasonal Arctic sea ice predictability and prediction
Arctic sea ice plays a central role in the Earth’s climate. Changes in the sea ice on seasonal-to-interannual timescales impact ecosystems, populations and a growing number of stak...
Dissolved Neodymium Isotopes Trace Origin and Spatiotemporal Evolution of Modern Arctic Sea Ice
Dissolved Neodymium Isotopes Trace Origin and Spatiotemporal Evolution of Modern Arctic Sea Ice
<p>The lifetime and thickness of Arctic sea ice have markedly decreased in the recent past. This affects Arctic marine ecosystems and the biological pump, given that ...
The rapid life of Arctic sea-ice ridge consolidation and melt
The rapid life of Arctic sea-ice ridge consolidation and melt
In this study, we cover observations of the rapid consolidation and enhanced melt of Arctic sea-ice ridges. During the freezing period, the consolidated part of sea ice ridges is u...
Differences in Arctic sea ice simulations from various SODA3 data sets
Differences in Arctic sea ice simulations from various SODA3 data sets
<p>SODA (Simple Ocean Data Assimilation) is one of the ocean reanalysis data widely used in oceanographic research. The SODA3 dataset provides multiple ocean reanalys...
The sea ice in Young Sound: Implications for carbon cycling
The sea ice in Young Sound: Implications for carbon cycling
Most of the year, Young Sound is covered by c. 160 cm thick sea ice overlain by a 20-100 cm thick snow cover. During the last 50 years the sea-ice-free period has varied between 63...
Evolution of Arctic sea ice in CMS reanalyses
Evolution of Arctic sea ice in CMS reanalyses
Arctic sea ice has recently experienced rapid changes, indicating a transition toward a new sea ice regime dominated by the marginal ice zone (MIZ) during summer. Modifications in ...

Back to Top