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  Glacial isostatic stress shadowing by the Antarctic ice sheet

Ivins, E. R., James, T. S., Klemann, V. (2003): Glacial isostatic stress shadowing by the Antarctic ice sheet. - Journal of Geophysical Research, 108, B12, 2560.
https://doi.org/10.1029/2002JB002182

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Item Permalink: https://gfzpublic.gfz-potsdam.de/pubman/item/item_229974 Version Permalink: -
Genre: Journal Article

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 Creators:
Ivins, E. R.1, Author
James, T. S.1, Author
Klemann, Volker2, Author              
1.2 Global Geomonitoring and Gravity Field, 1.0 Geodesy and Remote Sensing, Departments, GFZ Publication Database, Deutsches GeoForschungsZentrum, Author              
1.3 Earth System Modelling, 1.0 Geodesy and Remote Sensing, Departments, GFZ Publication Database, Deutsches GeoForschungsZentrum, Author              
Gravity Field and Gravimetry -2009, Geoengineering Centres, GFZ Publication Database, Deutsches GeoForschungsZentrum, Author              
Affiliations:
1External Organizations, ou_persistent22              
2Deutsches GeoForschungsZentrum, ou_persistent13              

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Free keywords: Antarctic Plate Earthquake, Wilkes Basin, neotectonics, Antarctic ice sheet, Coulomb stress, Transantarctic Mountain Ranges
 DDC: 550 - Earth sciences
 Abstract: Numerous examples of fault slip that offset late Quaternary glacial deposits and bedrock polish support the idea that the glacial loading cycle causes earthquakes in the upper crust. A semianalytical scheme is presented for quantifying glacial and postglacial lithospheric fault reactivation using contemporary rock fracture prediction methods. It extends previous studies by considering differential Mogi-von Mises stresses, in addition to those resulting from a Coulomb analysis. The approach utilizes gravitational viscoelastodynamic theory and explores the relationships between ice mass history and regional seismicity and faulting in a segment of East Antarctica containing the great Antarctic Plate (Balleny Island) earthquake of 25 March 1998 (Mw 8.1). Predictions of the failure stress fields within the seismogenic crust are generated for differing assumptions about background stress orientation, mantle viscosity, lithospheric thickness, and possible late Holocene deglaciation for the D91 Antarctic ice sheet history. Similar stress fracture fields are predicted by Mogi-von Mises and Coulomb theory, thus validating previous rebound Coulomb analysis. A thick lithosphere, of the order of 150–240 km, augments stress shadowing by a late melting (middle-late Holocene) coastal East Antarctic ice complex and could cause present-day earthquakes many hundreds of kilometers seaward of the former Last Glacial Maximum grounding line.

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 Dates: 2003
 Publication Status: Finally published
 Pages: -
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 Rev. Type: -
 Identifiers: eDoc: 4213
GFZPOF: 1.0 Globale Prozesse und Geomonitoring
DOI: 10.1029/2002JB002182
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Title: Journal of Geophysical Research
Source Genre: Journal, SCI, Scopus
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Pages: - Volume / Issue: 108 (B12, 2560) Sequence Number: - Start / End Page: - Identifier: CoNE: https://gfzpublic.gfz-potsdam.de/cone/journals/resource/journals268