Javascript must be enabled to continue!
The paradox of a long grounding during West Antarctic Ice Sheet retreat in Ross Sea
View through CrossRef
Abstract
Marine geological data show that the West Antarctic Ice Sheet (WAIS) advanced to the eastern Ross Sea shelf edge during the Last Glacial Maximum (LGM) and eventually retreated ~1000 km to the current grounding-line position on the inner shelf. During the early deglacial, the WAIS deposited a voluminous stack of overlapping grounding zone wedges (GZWs) on the outer shelf of the Whales Deep Basin. The large sediment volume of the GZW cluster suggests that the grounding-line position of the paleo-Bindschadler Ice Stream was relatively stationary for a significant time interval. We used an upper bound estimate of paleo-sediment flux to investigate the lower bound duration over which the ice stream would have deposited sediment to account for the GZW volume. Our calculations show that the cluster represents more than three millennia of ice-stream sedimentation. This long duration grounding was probably facilitated by rapid GZW growth. The subsequent punctuated large-distance (~200 km) grounding-line retreat may have been a highly non-linear ice sheet response to relatively continuous external forcing such as gradual climate warming or sea-level rise. These findings indicate that reliable predictions of future WAIS retreat may require incorporation of realistic calculations of sediment erosion, transport and deposition.
Springer Science and Business Media LLC
Title: The paradox of a long grounding during West Antarctic Ice Sheet retreat in Ross Sea
Description:
Abstract
Marine geological data show that the West Antarctic Ice Sheet (WAIS) advanced to the eastern Ross Sea shelf edge during the Last Glacial Maximum (LGM) and eventually retreated ~1000 km to the current grounding-line position on the inner shelf.
During the early deglacial, the WAIS deposited a voluminous stack of overlapping grounding zone wedges (GZWs) on the outer shelf of the Whales Deep Basin.
The large sediment volume of the GZW cluster suggests that the grounding-line position of the paleo-Bindschadler Ice Stream was relatively stationary for a significant time interval.
We used an upper bound estimate of paleo-sediment flux to investigate the lower bound duration over which the ice stream would have deposited sediment to account for the GZW volume.
Our calculations show that the cluster represents more than three millennia of ice-stream sedimentation.
This long duration grounding was probably facilitated by rapid GZW growth.
The subsequent punctuated large-distance (~200 km) grounding-line retreat may have been a highly non-linear ice sheet response to relatively continuous external forcing such as gradual climate warming or sea-level rise.
These findings indicate that reliable predictions of future WAIS retreat may require incorporation of realistic calculations of sediment erosion, transport and deposition.
Related Results
Holocene thinning history of David Glacier, Antarctica
Holocene thinning history of David Glacier, Antarctica
<p>The Antarctic Ice Sheet is a significant component of the Earth System, modulating Earth‘s sea level and climate. Present day and projected ice mass losses from Antarctica...
Modelling the present-day imbalance of the Antarctic Ice Sheet
Modelling the present-day imbalance of the Antarctic Ice Sheet
Recent human-driven climate change has very likely caused more frequent heatwaves, extreme weather events, and rising global sea levels. When it comes to rising sea levels, two pri...
A new HPLC-MS method for fatty acid detection in sea ice
A new HPLC-MS method for fatty acid detection in sea ice
The presence of marine-sourced fatty acids1,2,3, in Antarctic ice cores has been linked to changes in sea ice conditions2,3. It has been proposed that the phytoplankton within and ...
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...
Modelling the Hydro-fracture driven collapse of the Larsen B ice shelf
Modelling the Hydro-fracture driven collapse of the Larsen B ice shelf
Ice shelves play a key role in buttressing upstream ice - modulating the flow of grounded ice into the ocean and in turn affecting ice sheet contribution to sea level. Iceberg calv...
Seasonal flow variations of Ross Ice Shelf (Antarctica): from observations to modeling
Seasonal flow variations of Ross Ice Shelf (Antarctica): from observations to modeling
<p>Ice mass loss from both Antarctic Ice Sheet is increasing, accelerating its contribution to global sea level rise. Interactions between the ice shelves (the floati...
Sensitivity of the Antarctic ice sheets to the peak warming of Marine Isotope Stage 11
Sensitivity of the Antarctic ice sheets to the peak warming of Marine Isotope Stage 11
Abstract. Studying the response of the Antarctic ice sheets to past climate conditions similar to the present day can provide important insights for understanding its current chang...
Using De Geer moraines to reconstruct ice sheet retreat in high resolution
Using De Geer moraines to reconstruct ice sheet retreat in high resolution
This thesis explores the spatiotemporal properties of De Geer moraines (DGMs) in southwest Finland and assesses their utility as high-resolution ice margin indicators. This researc...

