HR: 16:00h
AN: U44A-01 INVITED [Abstracts]
TI: Recent Changes in Arctic Glaciers, Ice Caps, and the Greenland Ice Sheet: Cold Facts About Warm
Ice
AU: * Abdalati, W
EM: waleed.abdalati@nasa.gov
AF: NASA Goddard Space Flight Center, Cryospheric Sciences Branch
Code 614.1, Greenbelt, MD 20771
United States
AB:
One of the major manifestations of Arctic change can be observed in the state of balance of Arctic glaciers and ice caps and
the Greenland ice sheet. These ice masses are estimated to contain nearly 3 million cubic kilometers of ice, which is more
than six times greater than all the water stored in the Earth's lakes, rivers, and snow combined and is the equivalent of
over 7 meters of sea level. Most of these ice masses have been shrinking in recent in years, but their mass balance is highly
variable on a wide range of spatial and temporal scales. On the Greenland ice sheet most of the coastal regions have thinned
substantially as melt has increased and some of its outlet glaciers have accelerated. Near the equilibrium line in West
Greenland, we have seen evidence of summer acceleration that is linked to surface meltwater production, suggesting a
relatively rapid response mechanism of the ice sheet change to a warming climate. At the same time, however, the vast
interior regions of the Greenland ice sheet have shown little change or slight growth, as accumulation in these areas may
have increased. Throughout much of the rest of the Arctic, many glaciers and ice caps have been shrinking in the past few
decades, and in Canada and Alaska, the rate of ice loss seems to have accelerated during the late 1990s. These recent
observations offer only a snapshot in time of the long-term behavior, but they are providing crucial information about the
current state of ice mass balance and the mechanisms that control it in one of the most climatically sensitive regions on
Earth. As we continue to learn more through a combination of remote sensing observations, in situ measurements and improved
modeling capabilities, it is important that we coordinate and integrate these approaches effectively in order to predict
future changes and their impact on sea level, freshwater discharge, and ocean circulation.
DE: 1621 Cryospheric change (0776)
DE: 1630 Impacts of global change (1225)
DE: 1827 Glaciology (0736, 0776, 1863)
DE: 1863 Snow and ice (0736, 0738, 0776, 1827)
SC: Union [U]
MN: Fall Meeting 2005