{"id":4684,"date":"2019-12-09T00:32:00","date_gmt":"2019-12-08T23:32:00","guid":{"rendered":"https:\/\/www.sonnenseite.com\/science\/drone-images-show-greenland-ice-sheet-becoming-more-unstable-as-it-fractures.html"},"modified":"2019-12-09T00:32:00","modified_gmt":"2019-12-08T23:32:00","slug":"drone-images-show-greenland-ice-sheet-becoming-more-unstable-as-it-fractures","status":"publish","type":"post","link":"https:\/\/www.sonnenseite.com\/en\/science\/drone-images-show-greenland-ice-sheet-becoming-more-unstable-as-it-fractures\/","title":{"rendered":"Drone images show Greenland Ice Sheet becoming more unstable as it fractures"},"content":{"rendered":"<p>The world&rsquo;s second-largest ice sheet, and the single largest contributor to global sea level rise, is potentially becoming unstable because of fractures developing in response to faster ice flow and more meltwater forming on its surface.<\/p>\n<p> <!--more--> <\/p>\n<div class=\"Theme-Layer-BodyText--inner\">\n<p>Using custom-built drones strong enough to  withstand the extreme Arctic conditions, researchers led by the  University of Cambridge made the first drone-based observations of how  fractures form under meltwater lakes on the Greenland Ice Sheet. These  fractures cause catastrophic lake drainages, in which huge quantities of  surface water are transferred to the sensitive environment beneath the  ice. <\/p>\n<p>The <a class=\"cam-external\" href=\"http:\/\/doi.org\/10.1073\/pnas.1913685116\" target=\"_blank\" rel=\"noopener noreferrer\">study<\/a>, published in the <em>Proceedings of the National Academy of Sciences<\/em>,  shows how the water is transferred and how the ice sheet responds. The  researchers found that inflowing meltwater expanded the lake and  drainage began when the edge of the lake intersected a fracture, which  formed one year earlier.<\/p>\n<p>Each summer, thousands of lakes form on the  Greenland Ice Sheet as the weather warms. Many of these lakes can drain  in just a few hours, creating caverns known as moulins, through which  water descends to the bottom of the ice sheet. <\/p>\n<p>These cavities typically stay open for the  remainder of the melt season, as meltwater from streams and rivers on  the surface descends beneath the ice. Given that the ice sheet is  typically a kilometre thick or more, the flow of water into the moulins  may well be the world&rsquo;s largest waterfalls. <\/p>\n<p>While conducting the research from a camp on  Store Glacier in northwest Greenland, the team witnessed how this  fracture became active and how it propagated 500 metres further into the  lake, causing the lake to drain rapidly. In multiple drone flights, the  team was able to document the flow of water into the fracture and the  water&rsquo;s subsequent pathway under the ice.&nbsp;<\/p>\n<\/p><\/div>\n<div class=\"Theme-Layer-BodyText--inner\">\n<p>In a detailed reconstruction of the event,  which is rarely observed directly, the team, which also included  researchers from Aberystwyth and Lancaster Universities, showed how the  meltwater causes the formation of new fractures, as well as the  expansion of dormant fractures. <\/p>\n<p>In just five hours, five million cubic metres  of water &ndash; the equivalent of 2,000 Olympic-sized swimming pools &ndash;  drained to the bottom of the ice sheet via the fracture, causing a new  cavity to form and reducing the lake to a third of its original volume.  This caused the ice flow to accelerate from a speed of two metres per  day to more than five metres per day as surface water was transferred to  the bed, which in turn lifted the ice sheet by half a metre.<\/p>\n<p>The drone footage supports computer models  used by the same team of researchers to show that drainage of melt lakes  in Greenland can occur in a <a href=\"https:\/\/www.cam.ac.uk\/research\/news\/chain-reaction-of-fast-draining-lakes-poses-new-risk-for-greenland-ice-sheet\">chain reaction<\/a>.  The new study provides an insight as to how these chain reactions might  be triggered, via lakes that can drain through existing fractures.<\/p>\n<p>&ldquo;It&rsquo;s possible we&rsquo;ve under-estimated the  effects of these glaciers on the overall instability of the Greenland  Ice Sheet,&rdquo; said first author Tom Chudley, a PhD student at the Scott  Polar Research Institute and the team&rsquo;s drone pilot. &ldquo;It&rsquo;s a rare thing  to actually observe these fast-draining lakes &ndash; we were lucky to be in  the right place at the right time.&rdquo;<\/p>\n<p>&ldquo;These glaciers are already moving quite fast,  so the effect of the lakes may not appear to be as dramatic as it is on  slower-moving glaciers elsewhere, but the overall effect is in fact  very significant,&rdquo; said Dr Poul Christoffersen, who led the expedition.  &ldquo;To date, most observations are provided by satellites. These allow us  to see what&rsquo;s happening over the whole ice sheet, but drone-based  observations give a lot more nuance to our understanding of these lake  drainages. We can also observe the formation and re-opening of  fractures, which isn&rsquo;t possible from satellites.&rdquo;<\/p>\n<p>The drones, which were built at the Scott  Polar Research Institute, were fitted with autopilot and navigated  autonomously along pre-programmed flight paths in missions that lasted  up to an hour each. By also fitting on-board GPS, the team was able to  accurately geo-locate and stitch together hundreds of photos taken  during each survey. The photos were used to create detailed 3D  reconstructions of the ice sheet surface. <\/p>\n<p>The findings show that fast-flowing glaciers  in Greenland are subject to significant forcing by surface meltwater.  They also show that changes in ice flow occur on much shorter timescales  than considered possible so far. <\/p>\n<p>Christoffersen leads the EU-funded <a class=\"cam-external\" href=\"http:\/\/www.erc-responder.eu\/\" target=\"_blank\" rel=\"noopener noreferrer\">RESPONDER<\/a>  project, of which this study was a part. The RESPONDER team are using  the drone footage to identify &lsquo;hotspots&rsquo; where the ice sheet behaves  sensitively. <\/p>\n<p>Using drilling equipment, the team is now  exploring how the water is accommodated in the basal drainage system and  how the ice sheet may change over the coming decades as the climate  continues to warm. <\/p>\n<p>The difference between snow accumulation and  loss of ice in Greenland ice sheet currently amounts to one billion  tonnes of ice being lost every day. This net loss of ice is growing,  making the Greenland Ice Sheet the single largest contributor to global  sea level rise.<\/p>\n<p>The RESPONDER project is funded by the  European Research Council under the European Union&rsquo;s Horizon 2020  programme. Chudley is supported by the Natural Environment Research  Council. <\/p>\n<p><strong><em>Reference:<\/em><\/strong><em><br \/>Thomas R. Chudley et al. &lsquo;<\/em><a class=\"cam-external\" href=\"http:\/\/doi.org\/10.1073\/pnas.1913685116\" target=\"_blank\" rel=\"noopener noreferrer\"><em>Supraglacial lake drainage at a fast-flowing Greenlandic outlet glacier<\/em><\/a><em>.&rsquo; PNAS (2019). DOI: 10.1073\/pnas.1913685116<\/em><\/p>\n<\/p><\/div>\n<div class=\"article-images\"><img loading=\"lazy\" decoding=\"async\" width=\"400\" height=\"541\" src=\"https:\/\/www.sonnenseite.com\/wp-content\/uploads\/2019\/12\/UniversityCambridge_GletscherSpalte.jpg\" class=\"alignleft\" alt=\"Christoffersen\/ University of Cambridge\" srcset=\"https:\/\/www.sonnenseite.com\/wp-content\/uploads\/2019\/12\/UniversityCambridge_GletscherSpalte.jpg 400w, https:\/\/www.sonnenseite.com\/wp-content\/uploads\/2019\/12\/UniversityCambridge_GletscherSpalte-222x300.jpg 222w\" sizes=\"auto, (max-width: 400px) 100vw, 400px\" \/><img loading=\"lazy\" decoding=\"async\" width=\"400\" height=\"711\" src=\"https:\/\/www.sonnenseite.com\/wp-content\/uploads\/2019\/12\/UniversityCambridge_DrohneSpalte.jpg\" class=\"alignleft\" alt=\"Thomas Chudley\/ University of Cambridge\" srcset=\"https:\/\/www.sonnenseite.com\/wp-content\/uploads\/2019\/12\/UniversityCambridge_DrohneSpalte.jpg 400w, https:\/\/www.sonnenseite.com\/wp-content\/uploads\/2019\/12\/UniversityCambridge_DrohneSpalte-169x300.jpg 169w\" sizes=\"auto, (max-width: 400px) 100vw, 400px\" \/><\/div>\n<h5 class=\"green\">Source<\/h5>\n<p><a href=\"https:\/\/www.cam.ac.uk\/stories\/greenlandicesheet\" target=\"_blank\" rel=\"noopener noreferrer\">University of Cambridge | Sarah Collins 2019<\/a><\/p>\n<div class=\"shariff shariff-align-flex-start shariff-widget-align-flex-start\"><div class=\"ShariffHeadline\">Diese Meldung teilen<\/div><ul class=\"shariff-buttons theme-round orientation-horizontal buttonsize-medium\"><li class=\"shariff-button facebook shariff-nocustomcolor\" style=\"background-color:#4273c8;border-radius:1%\"><a href=\"https:\/\/www.facebook.com\/sharer\/sharer.php?u=https%3A%2F%2Fwww.sonnenseite.com%2Fen%2Fscience%2Fdrone-images-show-greenland-ice-sheet-becoming-more-unstable-as-it-fractures%2F\" title=\"Bei Facebook teilen\" aria-label=\"Bei Facebook teilen\" role=\"button\" rel=\"nofollow\" 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[&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":4678,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"inline_featured_image":false,"footnotes":""},"categories":[45],"tags":[],"class_list":["post-4684","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-science"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v26.5 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>Drone images show Greenland Ice Sheet becoming more unstable as it fractures - Sonnenseite - \u00d6kologische Kommunikation mit Franz Alt<\/title>\n<meta name=\"description\" content=\"The world&rsquo;s second-largest ice sheet, and the single largest contributor to global sea level rise, is potentially becoming unstable because of\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" 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