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      Aeolian sand sorting and megaripple formation

      , , , , ,
      Nature Physics
      Springer Nature

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          Velocity probability density functions of high Reynolds number turbulence

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            Aeolian processes at the Mars Exploration Rover Meridiani Planum landing site

            The martian surface is a natural laboratory for testing our understanding of the physics of aeolian (wind-related) processes in an environment different from that of Earth. Martian surface markings and atmospheric opacity are time-variable, indicating that fine particles at the surface are mobilized regularly by wind. Regolith (unconsolidated surface material) at the Mars Exploration Rover Opportunity's landing site has been affected greatly by wind, which has created and reoriented bedforms, sorted grains, and eroded bedrock. Aeolian features here preserve a unique record of changing wind direction and wind strength. Here we present an in situ examination of a martian bright wind streak, which provides evidence consistent with a previously proposed formational model for such features. We also show that a widely used criterion for distinguishing between aeolian saltation- and suspension-dominated grain behaviour is different on Mars, and that estimated wind friction speeds between 2 and 3 m s(-1), most recently from the northwest, are associated with recent global dust storms, providing ground truth for climate model predictions.
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              Wind Ripples

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                Author and article information

                Journal
                Nature Physics
                Nature Phys
                Springer Nature
                1745-2473
                1745-2481
                April 30 2018
                Article
                10.1038/s41567-018-0106-z
                c762a2df-efd4-4d40-a98b-5c5f47757aac
                © 2018

                http://www.springer.com/tdm

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