Close Menu
    Facebook X (Twitter) Instagram
    SciTechDaily
    • Biology
    • Chemistry
    • Earth
    • Health
    • Physics
    • Science
    • Space
    • Technology
    Facebook X (Twitter) Pinterest YouTube RSS
    SciTechDaily
    Home»Science»Computer Simulations Reveal Melting in East Antarctica Yields Unstoppable Sea-Level Rise
    Science

    Computer Simulations Reveal Melting in East Antarctica Yields Unstoppable Sea-Level Rise

    By Potsdam Institute for Climate Impact Research (PIK)May 6, 20141 Comment4 Mins Read
    Facebook Twitter Pinterest Telegram LinkedIn WhatsApp Email Reddit
    Share
    Facebook Twitter LinkedIn Pinterest Telegram Email Reddit
    Computer Simulations Show Ice Melting in East Antarctica Yields Unstoppable Sea Level Rise
    The melting of a relatively small ice volume on East Antarctica’s coast could initiate a continuous ice discharge into the ocean, leading to irreversible sea-level rise for millennia. Credit: M. Martin/PIK

    A new study based on computer simulations reveals that the melting of ice on East Antarctica’s shore could result in an unstoppable sea-level rise.

    The melting of a rather small ice volume on East Antarctica’s shore could trigger a persistent ice discharge into the ocean, resulting in unstoppable sea-level rise for thousands of years to come. This is shown in a study now published in Nature Climate Change by scientists from the Potsdam Institute for Climate Impact Research (PIK). The findings are based on computer simulations of the Antarctic ice flow using improved data of the ground profile underneath the ice sheet.

    “East Antarctica’s Wilkes Basin is like a bottle on a slant,” says lead author Matthias Mengel, “once uncorked, it empties out.” The basin is the largest region of marine ice on rocky ground in East Antarctica. Currently, a rim of ice at the coast holds the ice behind in place: like a cork holding back the content of a bottle. While the air over Antarctica remains cold, warming oceans can cause ice loss on the coast. Ice melting could make this relatively small cork disappear – once lost, this would trigger a long-term sea-level rise of 300-400 centimeters (10-13 feet). “The full sea-level rise would ultimately be up to 80 times bigger than the initial melting of the ice cork,” says co-author Anders Levermann.

    “Until recently, only West Antarctica was considered unstable, but now we know that its ten times bigger counterpart in the East might also be at risk,” says Levermann, who is head of PIK’s research area Global Adaptation Strategies and a lead author of the sea-level change chapter of the most recent scientific assessment report by the Intergovernmental Panel on Climate Change, IPCC. This report, published in late September, projects Antarctica’s total sea level contribution to be up to 16 centimeters within this century. “If half of that ice loss occurred in the ice-cork region, then the discharge would begin. We have probably overestimated the stability of East Antarctica so far,” says Levermann.

    Emitting greenhouse-gases could start uncontrollable ice-melt

    Melting would make the grounding line retreat – this is where the ice on the continent meets the sea and starts to float. The rocky ground beneath the ice forms a huge inland sloping valley below sea-level. When the grounding line retreats from its current position on a ridge into the valley, the rim of the ice facing the ocean becomes higher than before. More ice is then pushed into the sea, eventually breaking off and melting. And the warmer it gets, the faster this happens.

    Complete ice discharge from the affected region in East Antarctica takes five thousand to ten thousand years in the simulations. However, once started, the discharge would slowly but relentlessly continue until the whole basin is empty, even if climate warming stopped. “This is the underlying issue here”, says Matthias Mengel. “By emitting more and more greenhouse gases we might trigger responses now that we may not be able to stop in the future.” Such extensive sea level rise would change the face of planet Earth – coastal cities such as Mumbai, Tokyo or New York are likely to be at risk.

    References:

    “Ice plug prevents irreversible discharge from East Antarctica” by M. Mengel and A. Levermann, 4 May 2014, Nature Climate Change.
    DOI: 10.1038/nclimate2226

    “Potential climatic transitions with profound impact on Europe” by Anders Levermann, Jonathan L. Bamber, Sybren Drijfhout, Andrey Ganopolski, Winfried Haeberli, Neil R. P. Harris, Matthias Huss, Kirstin Krüger, Timothy M. Lenton, Ronald W. Lindsay, Dirk Notz, Peter Wadhams and Susanne Weber, 17 June 2014, Climatic Change.
    DOI: 10.1007/s10584-011-0126-5

     

    Never miss a breakthrough: Join the SciTechDaily newsletter.
    Follow us on Google and Google News.

    Antarctica Climate Change Climatology Environment Planetary Science Potsdam Institute for Climate Impact Research
    Share. Facebook Twitter Pinterest LinkedIn Email Reddit

    Related Articles

    Yale Study Reveals Parts of Ancient Antarctica Were as Warm as Today’s California Coast

    Study Reveals Climate Change is Occurring at an Increased Pace

    Prolonged Drought Contributed to Maya Civilization’s Collapse

    Changing Gulf Stream Is Destabilizing Gases Trapped in Sediments

    Record Arctic Snow Melt Might Be Prolonging American Drought

    Many Mammals in Western Hemisphere are Unlikely to Outrun Climate Change

    Antarctic Ecosystems Threatened by Invasive Alien Species and Climate Change

    Russians Celebrate Drilling into Lake Vostok, Biggest Antarctic Subglacial Lake

    Coal-Tar-Based Sealants Emitting PAHs at Rates Possibly Greater Than Auto Emissions

    1 Comment

    1. Clyde Spencer on May 8, 2020 1:07 pm

      “Melting would make the grounding line retreat – this is where the ice on the continent meets the sea and starts to float. The rocky ground beneath the ice forms a huge inland sloping valley below sea-level. When the grounding line retreats from its current position on a ridge into the valley, the rim of the ice facing the ocean becomes higher than before. More ice is then pushed into the sea, eventually breaking off and melting.”

      I seem to be missing something here! If the ice tongue melts, and the terminus retreats up-slope past the grounding line, allowing the unbuttressed ice to surge forward, wouuldn’t that re-establish the grounded-ice buttress?

      Reply
    Leave A Reply Cancel Reply

    • Facebook
    • Twitter
    • Pinterest
    • YouTube

    Don't Miss a Discovery

    Subscribe for the Latest in Science & Tech!

    Trending News

    Enormous Prehistoric Insects Puzzle Scientists

    Scientists Develop Bioengineered Chewing Gum That Could Help Fight Oral Cancer

    After 37 Years, the World’s Longest-Running Soil Warming Experiment Uncovers a Startling Climate Secret

    NASA Satellite Captures First-Ever High-Res View of Massive Pacific Tsunami

    ADHD Isn’t Just a Deficit: Study Reveals Powerful Hidden Strengths

    Scientists Discover Stem Cells That Could Regrow Teeth and Bone

    Early Cannabis Use May Stall Key Brain Skills in Teens

    Popular Vitamin D Supplement Has “Previously Unknown” Negative Effect, Study Finds

    Follow SciTechDaily
    • Facebook
    • Twitter
    • YouTube
    • Pinterest
    • Newsletter
    • RSS
    SciTech News
    • Biology News
    • Chemistry News
    • Earth News
    • Health News
    • Physics News
    • Science News
    • Space News
    • Technology News
    Recent Posts
    • Rewriting Dinosaur Evolution: Scientists Unearth Remarkable 150-Million-Year-Old Stegosaur Skull
    • Scientists Identify Two Simple Treatments for Cancer-Related Cognitive Impairment
    • Omega-3 Supplements Linked to Cognitive Decline in Surprising New Study
    • One in Five at Risk: Scientists Identify a Hidden Blood Particle Linked to Higher Risk of Stroke and Death
    • Darwin’s Islands Still Evolving: Giant Daisies Rewrite the Rules of Evolution
    Copyright © 1998 - 2026 SciTechDaily. All Rights Reserved.
    • Science News
    • About
    • Contact
    • Editorial Board
    • Privacy Policy
    • Terms of Use

    Type above and press Enter to search. Press Esc to cancel.