A 39-winter (1963–2001) record of annual maximum ice concentration (AMIC), the maximum fraction of lake surface area covered by ice each year, is analyzed for each Great Lake. Lake Erie has the largest median AMIC (94%) followed by Lakes Superior (80%), Huron(63%), Michigan (33%), and Ontario (21%). The frequency distributionof AMICs is negatively skewed for Lakes Superior and Erie and positively skewed for Lakes Michigan and Ontario. Temporal and spatial patterns of typical and extreme AMICs is presented within the context of long-term average air temperatures and lake bathymetry. The variation of spatially averaged ice concentration with discrete depth ranges are discussed for each lake for the upper and lower end of the typical range of ...
The one-dimensional hydrodynamic ice model, DYRESM-WQ-I, was modified to simulate ice cover and ther...
Since the late 1990s, the Laurentian Great Lakes have experienced persistent low water levels and ab...
Long-term lake ice phenological records from around the Northern Hemisphere provide unique sensitive...
In this study, temporal and spatial variability of ice cover in the Great Lakes are investigated usi...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/94591/1/eost17090.pd
Great Lakes ice cover has been regularly documented and reported only since the 1970s, while incons...
Great Lakes ice cover has been regularly documented and reported only since the 1970s, while incons...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/108350/1/eost2014EO340001.pd
Among its many impacts, climate warming is leading to increasing winter air temperatures, decreasing...
The one-dimensional hydrodynamic ice model, DYRESM-WQ-I, was modified to simulate ice cover and ther...
One of the most notable ways the Laurentian Great Lakes impact the region’s climate is by augmenting...
Among its many impacts, climate warming is leading to increasing winter air temperatures, decreasing...
Ice-on date occurred significantly later over 1975–2009 at Dickie Lake, Ontario, while ice-off...
Long-term lake ice phenological records from around the Northern Hemisphere provide unique sensitive...
Lake ice phenology (timing of ice breakup and freeze up) is a sensitive indicator of climate. We acq...
The one-dimensional hydrodynamic ice model, DYRESM-WQ-I, was modified to simulate ice cover and ther...
Since the late 1990s, the Laurentian Great Lakes have experienced persistent low water levels and ab...
Long-term lake ice phenological records from around the Northern Hemisphere provide unique sensitive...
In this study, temporal and spatial variability of ice cover in the Great Lakes are investigated usi...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/94591/1/eost17090.pd
Great Lakes ice cover has been regularly documented and reported only since the 1970s, while incons...
Great Lakes ice cover has been regularly documented and reported only since the 1970s, while incons...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/108350/1/eost2014EO340001.pd
Among its many impacts, climate warming is leading to increasing winter air temperatures, decreasing...
The one-dimensional hydrodynamic ice model, DYRESM-WQ-I, was modified to simulate ice cover and ther...
One of the most notable ways the Laurentian Great Lakes impact the region’s climate is by augmenting...
Among its many impacts, climate warming is leading to increasing winter air temperatures, decreasing...
Ice-on date occurred significantly later over 1975–2009 at Dickie Lake, Ontario, while ice-off...
Long-term lake ice phenological records from around the Northern Hemisphere provide unique sensitive...
Lake ice phenology (timing of ice breakup and freeze up) is a sensitive indicator of climate. We acq...
The one-dimensional hydrodynamic ice model, DYRESM-WQ-I, was modified to simulate ice cover and ther...
Since the late 1990s, the Laurentian Great Lakes have experienced persistent low water levels and ab...
Long-term lake ice phenological records from around the Northern Hemisphere provide unique sensitive...