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Warm winds: New insight into what weakens Antarctic ice shelves
by Staff Writers
London, UK (SPX) Apr 27, 2017


This image shows meltwater pools on the Larsen C ice shelf in Antarctica. Image courtesy Jenny Turton (British Antarctic Survey).

New research describes for the first time the role that warm, dry winds play in influencing the behaviour of Antarctic ice shelves. Presenting this week at a European conference scientists from British Antarctic Survey (BAS) explain how spring and summer winds, known as fohn winds, are prevalent on the Larsen C Ice Shelf, West Antarctica and creating melt pools. The Larsen C Ice Shelf is of particular interest to scientists because it of the collapse of Larsen A in 1995 and Larsen B in 2002.

The researchers observed the fohn winds, which blow around 65% of the spring and summer period, extend further south and are more frequent than previously thought, and are likely to be a contributing factor that weakens ice shelves before a collapse. The results are presented this week (Tuesday 25 April) at the European Geosciences Union General Assembly (EGU) in Vienna.

In 1995 and 2002, the Larsen A and B ice shelves collapsed, depositing an area the size of Shropshire into the Weddell Sea. Whilst ice shelf collapse doesn't directly contribute to sea level rise, the glaciers which fed into the ice shelves accelerated, leading to the loss of land ice, and subsequently indirect sea level rise.

The processes responsible for the collapse of these ice shelves were largely debated, and it is now thought that crevasses on the ice shelf were widened and deepened by water draining into the cracks. Fohn winds are thought to be responsible for melting the ice shelf surface and supplying the water.

The findings describe when and where the warm, dry winds occur over the Larsen C Ice Shelf, the largest remaining ice shelf on the Antarctic Peninsula (roughly the size of Wales). Fohn winds were measured from near-surface weather stations and regional climate model data over a five year period and observed all year-round, but were most frequent in spring.

PhD student and lead scientist on this project from British Antarctic Survey (BAS) and Leeds University, Jenny Turton says:

"What's new and surprising from this study is that fohn winds occur around 65% of the time during the spring and summer. And we didn't know how much they influence the creation of melt pools and therefore are likely to weaken the ice shelf.

"Whilst a high number occur in spring, the combined warming over a number of days leads to much more surface melting than was experienced during days without fohn winds. This is important, as melting during summer and re-freezing during winter weakens the ice surface, and makes it more at risk of melting again the following season.

"We know the ice shelf often melts a little during summer, however we have found that when fohn events occur as early as September (three months earlier than the start of the summer melt season), the ice shelf surface is melting. Now that we know how prevalent and spatially extensive these winds are, we can look further into the effect they are having on the ice shelf."

ICE WORLD
More Antarctic protections urged on World Penguin Day
Sydney (AFP) April 25, 2017
The world needs to do more to protect the Antarctic wilderness and its wildlife, scientists warned Tuesday, as they marked World Penguin Day. The flightless seabirds - a favourite with children for their clumsy, waddling gait - offer a useful yardstick for researchers to judge the health of their habitat. "Penguins are great ambassadors for understanding the need to conserve Southern O ... read more

Related Links
British Antarctic Survey
Beyond the Ice Age


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