Inversion of IceBridge gravity data for continental shelf bathymetry beneath the Larsen Ice Shelf, Antarctica

被引:25
作者
Cochran, James R. [1 ]
Bell, Robin E. [1 ]
机构
[1] Columbia Univ, Lamont Doherty Earth Observ, Palisades, NY USA
关键词
PINE ISLAND GLACIER; BREAK-UP; WEST; PENINSULA; SEA; RETREAT; BASIN; SHEET; DISINTEGRATION; STABILITY;
D O I
10.3189/2012JoG11J033
中图分类号
P9 [自然地理学];
学科分类号
0705 ; 070501 ;
摘要
A possible cause for accelerated thinning and break-up of floating marine ice shelves is warming of the water in the cavity below the ice shelf. Accurate bathymetry beneath large ice shelves is crucial for developing models of the ocean circulation in the sub-ice cavities. A grid of free-air gravity data over the floating Larsen C ice shelf collected during the Ice Bridge 2009 Antarctic campaign was utilized to develop the first bathymetry model of the underlying continental shelf. Independent control on the continental shelf geologic structures from marine surveys was used to constrain the inversion. Depths on the continental shelf beneath the ice shelf estimated from the inversion generally range from about 350 to 650 m, but vary from <300 to >1000 m. Localized overdeepenings, 20-30 km long and 900-1000 m deep, are located in inlets just seaward of the grounding line. Submarine valleys extending seaward from the overdeepenings coalesce into two broad troughs that extend to the seaward limit of the ice shelf and appear to extend to the edge of the continental shelf. The troughs are generally at a depth of 550-700 m although the southernmost mapped trough deepens to over 1000 m near the edge of the ice shelf just south of 68 S. The combination of the newly determined bathymetry with published ice-draft determinations based on laser altimetry and radar data defines the geometry of the water-filled cavity. These newly imaged troughs provide a conduit for water to traverse the continental shelf and interact with the overlying Larsen C ice shelf and the grounding lines of the outlet glaciers.
引用
收藏
页码:540 / 552
页数:13
相关论文
共 82 条
[1]   Early summer thermohaline characteristics and mixing in the western Weddell Sea [J].
Absy, J. M. ;
Schroeder, M. ;
Muench, R. ;
Hellmer, H. H. .
DEEP-SEA RESEARCH PART II-TOPICAL STUDIES IN OCEANOGRAPHY, 2008, 55 (8-9) :1117-1131
[2]  
[Anonymous], 2002, GEODYNAMICS
[3]  
Bamber J., 2009, Antarctic 1 km digital elevation model (DEM) from combined ERS-1 radar and ICESat laser satellite altimetry
[4]   A new 1 km digital elevation model of the Antarctic derived from combined satellite radar and laser data - Part 1: Data and methods [J].
Bamber, J. L. ;
Gomez-Dans, J. L. ;
Griggs, J. A. .
CRYOSPHERE, 2009, 3 (01) :101-111
[5]   Reassessment of the Potential Sea-Level Rise from a Collapse of the West Antarctic Ice Sheet [J].
Bamber, Jonathan L. ;
Riva, Riccardo E. M. ;
Vermeersen, Bert L. A. ;
LeBrocq, Anne M. .
SCIENCE, 2009, 324 (5929) :901-903
[6]  
Bell RE, 1990, ANTARACTIC RES SERIE, P91
[7]   DENSITY OF THE OCEAN CRUST [J].
CARLSON, RL ;
RASKIN, GS .
NATURE, 1984, 311 (5986) :555-558
[8]  
Carmack EC, 1977, POLAR OCEANS, P151
[9]   Overview of areal changes of the ice shelves on the Antarctic Peninsula over the past 50 years [J].
Cook, A. J. ;
Vaughan, D. G. .
CRYOSPHERE, 2010, 4 (01) :77-98
[10]   Glacier surge after ice shelf collapse [J].
De Angelis, H ;
Skvarca, P .
SCIENCE, 2003, 299 (5612) :1560-1562