Physics
Scientific paper
Jan 2012
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2012georl..3902803h&link_type=abstract
Geophysical Research Letters, Volume 39, Issue 2, CiteID L02803
Physics
Geodesy And Gravity: Atmosphere Monitoring With Geodetic Techniques (6952), Atmospheric Processes: Data Assimilation, Atmospheric Processes: Polar Meteorology, Atmospheric Processes: Remote Sensing (4337)
Scientific paper
Global warming has focused attention on the polar regions and recent changes in sea and land ice distribution. Accurate modeling of the future evolution of climate and weather in the Antarctic relies heavily on remote sensing observations. However, their reliable assimilation into numerical weather models and reanalyses is challenging because of the unique environment and sparsity of in-situ observations for validation. We developed a stratospheric balloon-borne GPS radio occultation system for the 2010 Concordiasi campaign to provide refractivity and derived temperature profiles for improving satellite data assimilation. The observed excess phase delay profiles agree with those simulated from model and dropsonde profiles. 711 occultations were recorded from two balloons, comparable to the number of profiles acquired by 13 driftsonde balloons. Of these profiles, 32% descended to 4 km above the surface, without open-loop receiver tracking technology, demonstrating it is possible to retrieve useful information with relatively simple low cost instruments.
Cocquerez Ph.
Guidard V.
Haase J. S.
Johnson Alexandria V.
Maldonado-Vargas J.
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