Literature DB >> 29576818

Aeolian dune sediment flux heterogeneity in Meridiani Planum, Mars.

Matthew Chojnacki1, Anna Urso1, Lori K Fenton2, Timothy I Michaels2.   

Abstract

It is now known unambiguously that wind-driven bedform activity is occurring on the surface of Mars today, including early detections of active sand dunes in Meridiani Planum's Endeavour crater. Many of these reports are only based on a few sets of observations of relatively isolated bedforms and lack regional context. Here, we investigate aeolian activity across central Meridiani Planum and test the hypothesis that dune sites surrounding Endeavour crater are also active and part of region-wide sediment migration driven by northwesterly winds. All 13 dune fields investigated clearly showed evidence for activity and the majority exhibited dune migration (average rates of 0.6 m/Earth-year). Observations indicate substantial geographic and temporal heterogeneity of dune crest fluxes across the area and per site. Locations with multiple time steps indicate dune sand fluxes can vary by a factor of five, providing evidence for short periods of rapid migration followed by near-stagnation. In contrast, measurements at other sites are nearly identical, indicating that some dunes are in a steady-state as they migrate. The observed sediment transport direction was consistent with a regional northeasterly-to-northwesterly wind regime, revealing more variations than were appreciated from earlier, more localized studies. Craters containing shallow, degraded, flat-floored interiors tended to have dunes with high sediment fluxes/activity, whereas local kilometer-scale topographic obstructions (e.g., central peaks, yardangs) were found to be inversely correlated with dune mobility. Finally, the previous, more limited detections of dune activity in Endeavour crater have been shown to be representative of a broader, region-wide pattern of dune motion.

Year:  2016        PMID: 29576818      PMCID: PMC5863747          DOI: 10.1016/j.aeolia.2016.07.004

Source DB:  PubMed          Journal:  Aeolian Res        ISSN: 1875-9637            Impact factor:   3.336


  3 in total

1.  Global mineralogical and aqueous mars history derived from OMEGA/Mars Express data.

Authors:  Jean-Pierre Bibring; Yves Langevin; John F Mustard; François Poulet; Raymond Arvidson; Aline Gendrin; Brigitte Gondet; Nicolas Mangold; P Pinet; F Forget; Michel Berthé; Jean-Pierre Bibring; Aline Gendrin; Cécile Gomez; Brigitte Gondet; Denis Jouglet; François Poulet; Alain Soufflot; Mathieu Vincendon; Michel Combes; Pierre Drossart; Thérèse Encrenaz; Thierry Fouchet; Riccardo Merchiorri; Giancarlo Belluci; Francesca Altieri; Vittorio Formisano; Fabricio Capaccioni; Pricilla Cerroni; Angioletta Coradini; Sergio Fonti; Oleg Korablev; Volodia Kottsov; Nikolai Ignatiev; Vassili Moroz; Dimitri Titov; Ludmilla Zasova; Damien Loiseau; Nicolas Mangold; Patrick Pinet; Sylvain Douté; Bernard Schmitt; Christophe Sotin; Ernst Hauber; Harald Hoffmann; Ralf Jaumann; Uwe Keller; Ray Arvidson; John F Mustard; Tom Duxbury; François Forget; G Neukum
Journal:  Science       Date:  2006-04-21       Impact factor: 47.728

2.  Earth-like sand fluxes on Mars.

Authors:  N T Bridges; F Ayoub; J-P Avouac; S Leprince; A Lucas; S Mattson
Journal:  Nature       Date:  2012-05-09       Impact factor: 49.962

3.  Threshold for sand mobility on Mars calibrated from seasonal variations of sand flux.

Authors:  F Ayoub; J-P Avouac; C E Newman; M I Richardson; A Lucas; S Leprince; N T Bridges
Journal:  Nat Commun       Date:  2014-09-30       Impact factor: 14.919

  3 in total
  2 in total

1.  Boundary condition controls on the high-sand-flux regions of Mars.

Authors:  Matthew Chojnacki; Maria E Banks; Lori K Fenton; Anna C Urso
Journal:  Geology       Date:  2019-03-11       Impact factor: 5.399

Review 2.  Active Mars: A Dynamic World.

Authors:  Colin M Dundas; Patricio Becerra; Shane Byrne; Matthew Chojnacki; Ingrid J Daubar; Serina Diniega; Candice J Hansen; Kenneth E Herkenhoff; Margaret E Landis; Alfred S McEwen; Ganna Portyankina; Adomas Valantinas
Journal:  J Geophys Res Planets       Date:  2021-07-29       Impact factor: 4.434

  2 in total

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