In this natural-color image from NASA's Terra spacecraft, a fingerprint-like gravity wave feature occurs over a deck of marine stratocumulus clouds.
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Gravity Waves Ripple over Marine Stratocumulus Clouds

In this natural-color image from the Multi-angle Imaging SpectroRadiometer (MISR), a fingerprint-like gravity wave feature occurs over a deck of marine stratocumulus clouds. Similar to the ripples that occur when a pebble is thrown into a still pond, such "gravity waves" sometimes appear when the relatively stable and stratified air masses associated with stratocumulus cloud layers are disturbed by a vertical trigger from the underlying terrain, or by a thunderstorm updraft or some other vertical wind shear. The stratocumulus cellular clouds that underlie the wave feature are associated with sinking air that is strongly cooled at the level of the cloud-tops -- such clouds are common over mid-latitude oceans when the air is unperturbed by cyclonic or frontal activity. This image is centered over the Indian Ocean (at about 38.9° South, 80.6° East), and was acquired on October 29, 2003.

The Multi-angle Imaging SpectroRadiometer observes the daylit Earth continuously and every 9 days views the entire globe between 82° north and 82° south latitude. These data products were generated from a portion of the imagery acquired during Terra orbit 20545. The image covers an area of 245 kilometers x 378 kilometers, and uses data from blocks 121 to 122 within World Reference System-2 path 134.

MISR was built and is managed by NASA's Jet Propulsion Laboratory, Pasadena, CA, for NASA's Office of Earth Science, Washington, DC. The Terra satellite is managed by NASA's Goddard Space Flight Center, Greenbelt, MD. JPL is a division of the California Institute of Technology.

Image details

ID#:
PIA04349

Date added:
2004-01-07

Target:
Earth

Mission:
Terra

Spacecraft:
Terra

Instruments:
Multi-angle Imaging SpectroRadiometer (MISR)

Rating:



Views:
866

Full-Res TIFF:
PIA04349.tif (3.48 MB)

Full-Res JPG:
PIA04349.jpg (0.19 MB)

Image credit:
NASA/GSFC/LaRC/JPL, MISR Team