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  • Copernicus Publications on behalf of the European Geosciences Union  (1)
  • Mineralogical Society of America  (1)
  • 1
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    Copernicus Publications on behalf of the European Geosciences Union
    In:  EPIC3The Cryosphere, Copernicus Publications on behalf of the European Geosciences Union, 5, pp. 1057-1081
    Publication Date: 2019-07-17
    Description: To better understand the spatio-temporal variability of the glaciological environment in Dronning Maud Land (DML), East Antarctica, a 2800-km-long Japanese-Swedish traverse was carried out. The route includes ice divides between two ice-coring sites at Dome Fuji and EPICA DML. We determined the surface mass balance (SMB) averaged over various time scales in the late Holocene based on studies of snow pits and firn cores, in addition to radar data. We find that the large-scale distribution of the SMB depends on the surface elevation and continentality, and that the SMB differs between the windward and leeward sides of ice divides for strong-wind events. We suggest that the SMB is highly influenced by interactions between the large-scale surface topography of ice divides and the wind field of strong-wind events that are often associated with high-precipitation events. Local variations in the SMB are governed by the local surface topography, which is influenced by the bedrock topography. In the eastern part of DML, the accumulation rate in the second half of the 20th century is found to be higher by ca.15% than averages over longer periods of 722 a or 7.9 ka before AD 2008. A similar increasing trend has been reported for many inland plateau sites in Antarctica with the exception of several sites on the leeward side of the ice divides.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Article , isiRev
    Format: application/pdf
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  • 2
    Publication Date: 2016-05-03
    Description: The cores of the Earth and other differentiated bodies are believed to be comprised of iron and various amounts of light elements. Measuring the densities and sound velocities of iron and its alloys at high pressures and high temperatures is crucial for understanding the structure and composition of these cores. In this study, the sound velocities ( v P and v S ) and density measurements of body-centered cubic ( bcc )-Fe were determined experimentally up to 6.3 GPa and 800 K using ultrasonic and X-ray diffraction methods. Based on the measured v P , v S , and density, we obtained the following parameters regarding the adiabatic bulk K S and shear G moduli of bcc -Fe: K S0 = 163.2(15) GPa, K S / P = 6.75(33), K S / T = –0.038(3) GPa/K, G 0 = 81.4(6) GPa, G / P = 1.66(14), and G / T = –0.029(1) GPa/K. Moreover, we observed that the sound velocity–density relationship for bcc -Fe depended on temperature in the pressure and temperature ranges analyzed in this study and the effect of temperature on v S was stronger than that on v P at a constant density, e.g., 6.0% and 2.7% depression for v S and v P , respectively, from 300 to 800 K at 8000 kg/m 3 . Furthermore, the effects of temperature on both v P and v S at a constant density were much greater for bcc -Fe than for -FeSi (cubic B20 structure), according to previously obtained measurements, which may be attributable to differences in the degree of thermal pressure. These results suggest that the effects of temperature on the sound velocity–density relationship for Fe alloys strongly depend on their crystal structures and light element contents in the range of pressure and temperature studied.
    Print ISSN: 0003-004X
    Electronic ISSN: 1945-3027
    Topics: Geosciences
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