4.6 Article

A global view of stratospheric gravity wave hotspots located with Atmospheric Infrared Sounder observations

Journal

JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES
Volume 118, Issue 2, Pages 416-434

Publisher

AMER GEOPHYSICAL UNION
DOI: 10.1029/2012JD018658

Keywords

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Funding

  1. Chinese Academy of Sciences [KJCX2-EW-J01, KZCX2-EW-QN509]
  2. National Natural Science Foundation of China [41174132, 40804035]
  3. foundation for the Author of National Excellent Doctoral Dissertation of PR China [201025]
  4. Science of Terra and Aqua NASA [NNH11CD34C]

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The main aim of this study is to find and classify hotspots of stratospheric gravity waves on a global scale. The analysis is based on a 9 year record (2003 to 2011) of radiance measurements by the Atmospheric Infrared Sounder (AIRS) aboard NASA's Aqua satellite. We detect gravity waves based on 4.3 mu m brightness temperature variances. Our method focuses on peak events, i.e., strong gravity wave events for which the local variance considerably exceeds background levels. We estimate the occurrence frequencies of these peak events for different seasons and time of day and use the results to find local maxima or hotspots. In addition, we use AIRS radiances at 8.1 mu m to simultaneously detect convective events, including deep convection in the tropics and mesoscale convective systems at middle latitudes. We classify the gravity wave sources based on seasonal occurrence frequencies for convection, but also by means of time series analyses and topographic data. Our study reproduces well-known hotspots of gravity waves, e. g., the Andes and the Antarctic Peninsula. However, the high horizontal resolution of the AIRS observations also allows us to locate numerous mesoscale hotspots, which are partly unknown or poorly studied so far. Most of these mesoscale hotspots are found near orographic features like mountain ranges, coasts, lakes, deserts, or isolated islands. This study will help to select promising regions and seasons for future case studies of gravity waves. Citation: Hoffmann, L., X. Xue, and M. J. Alexander (2013), A global view of stratospheric gravity wave hotspots located with Atmospheric Infrared Sounder observations, J. Geophys. Res. Atmos., 118, 416-434, doi:10.1029/2012JD018658.

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