4.5 Article Proceedings Paper

Mars Global Digital Dune Database (MGD3): Global dune distribution and wind pattern observations

期刊

ICARUS
卷 230, 期 -, 页码 38-46

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.icarus.2013.04.011

关键词

Mars; Mars, Surface; Mars, Climate

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The Mars Global Digital Dune Database (MGD(3)) is complete and now extends from 90 degrees N to 90 degrees S latitude. The recently released south pole (SP) portion (MC-30) of MGD(3) adds similar to 60,000 km(2) of medium to large-size dark dune fields and similar to 15,000 km(2) of sand deposits and smaller dune fields to the previously released equatorial (EQ similar to 70,000 km(2)), and north pole (NP, similar to 845,000 km(2)) portions of the database, bringing the global total to similar to 975,000 km(2). Nearly all NP dunes are part of large sand seas, while the majority of EQ and SP dune fields are individual dune fields located in craters. Despite the differences between Mars and Earth, their dune and dune field morphologies are strikingly similar. Bullseye dune fields, named for their concentric ring pattern, are the exception, possibly owing their distinctive appearance to winds that are unique to the crater environment. Ground-based wind directions are derived from slipface (SF) orientation and dune centroid azimuth (DCA), a measure of the relative location of a dune field inside a crater. SF and DCA often preserve evidence of different wind directions, suggesting the importance of local, topographically influenced winds. In general however, ground-based wind directions are broadly consistent with expected global patterns, such as polar easterlies. Intriguingly, between 40 S and 80 S latitude both SF and DCA preserve their strongest, though different, dominant wind direction, with transport toward the west and east for SF-derived winds and toward the north and west for DCA-derived winds. Published by Elsevier Inc.

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