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Wind Carved Rock

Jet Propulsion Laboratory https://www.jpl.nasa.gov/ Oct. 19, 2016
The distinctively fluted surface and elongated hills in Medusae Fossae are caused by wind erosion of a soft fine-grained rock, as seen by NASA's Mars Reconnaissance Orbiter.

The distinctively fluted surface and elongated hills in this image in Medusae Fossae are caused by wind erosion of a soft fine-grained rock. Called yardangs, these features are aligned with the prevailing wind direction. This wind direction would have dominated for a very long time to carve these large-scale features into the exposed rock we see today.

Yardangs not only reveal the strength and direction of historic winds, but also reveal something of the host rock itself. Close inspection by HiRISE shows an absence of boulders or rubble, especially along steep yardang cliffs and buttresses. The absence of rubble and the scale of the yardangs tells us that the host rock consists only of weakly cemented fine granules in tens of meters or more thick deposits. Such deposits could have come from extended settling of volcanic ash, atmospheric dust, or accumulations of wind deposited fine sands. After a time these deposits became cemented and cohesive, illustrated by the high standing relief and exposed cliffs.

The University of Arizona, Tucson, operates HiRISE, which was built by Ball Aerospace & Technologies Corp., Boulder, Colo. NASA's Jet Propulsion Laboratory, a division of the California Institute of Technology in Pasadena, manages the Mars Reconnaissance Orbiter Project for NASA's Science Mission Directorate, Washington.

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  • Mars
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  • Mars Reconnaissance Orbiter (MRO)
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  • High Resolution Imaging Science Experiment (HiRISE)
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NASA/JPL-Caltech/Univ. of Arizona

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