Welcome to the new version of CaltechAUTHORS. Login is currently restricted to library staff. If you notice any issues, please email coda@library.caltech.edu
Published August 28, 2010 | Published
Journal Article Open

Dune field pattern formation and recent transporting winds in the Olympia Undae Dune Field, north polar region of Mars

Abstract

High-Resolution Imaging Science Experiment (HiRISE) imagery of the central Olympia Undae Dune Field in the north polar region of Mars shows a reticulate dune pattern consisting of two sets of nearly orthogonal dune crestlines, with apparent slipfaces on the primary crests, ubiquitous wind ripples, areas of coarse-grained wind ripples, and deflated interdune areas. Geomorphic evidence and dune field pattern analysis of dune crest length, spacing, defect density, and orientation indicates that the pattern is complex, representing two constructional generations of dunes. The oldest and best-organized generation forms the primary crestlines and is transverse to circumpolar easterly winds. Gross bed form-normal analysis of the younger pattern of crestlines indicates that it emerged with both circumpolar easterly winds and NE winds and is reworking the older pattern. Mapping of secondary flow fields over the dunes indicates that the most recent transporting winds were from the NE. The younger pattern appears to represent an influx of sediment to the dune field associated with the development of the Olympia Cavi reentrant, with NE katabatic winds channeling through the reentrant. A model of the pattern reformation based upon the reconstructed primary winds and resulting secondary flow fields shows that the development of the secondary pattern is controlled by the boundary condition of the older dune topography.

Additional Information

© 2010 American Geophysical Union. Received 13 October 2009; accepted 24 March 2010; published 28 August 2010. Funding provided by NASA MDAP NNX07AV36G. Comments from Douglas J. Jerolmack and an anonymous reviewer are gratefully acknowledged.

Attached Files

Published - Ewing2010p11399J_Geophys_Res-Planet.pdf

Files

Ewing2010p11399J_Geophys_Res-Planet.pdf
Files (14.7 MB)
Name Size Download all
md5:60a4bb87d43f4c27ed3e53c44ff332e2
14.7 MB Preview Download

Additional details

Created:
August 19, 2023
Modified:
October 20, 2023