Persistent aeolian activity at Endeavour crater, Meridiani Planum, Mars; new observations from orbit and the surface

被引:51
|
作者
Chojnacki, Matthew [1 ]
Johnson, Jeffrey R. [2 ]
Moersch, Jeffrey E. [3 ]
Fenton, Lori K. [4 ]
Michaels, Timothy I. [4 ]
Bell, James F., III [5 ]
机构
[1] Univ Arizona, Lunar & Planetary Lab, Tucson, AZ 85721 USA
[2] Johns Hopkins Univ, Appl Phys Lab, Laurel, MD 20723 USA
[3] Univ Tennessee, Dept Earth & Planetary Sci, Knoxville, TN 37996 USA
[4] SETI Inst, Carl Sagan Ctr, Mountain View, CA 94043 USA
[5] Arizona State Univ, Sch Earth & Space Explorat, Tempe, AZ 85281 USA
关键词
Aeolian processes; Mars; surface; atmosphere; climate; Geological processes; EMISSION SPECTROMETER EXPERIMENT; DUNE FIELDS; SAND; EVOLUTION; SYSTEM; CAMERA; VIEWS; EARTH;
D O I
10.1016/j.icarus.2014.04.044
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Aeolian-driven bedform activity is now known to occur in many regions of Mars, based on surface and orbital observation of contemporary martian ripple and dune mobility events. Many of these sites have only been monitored with sufficient resolution data for the last few Mars years, when the High Resolution Imaging Science Experiment (HiRISE) began acquiring images of Mars. One exception is the well-monitored Endeavour crater in Meridiani Planum, which was one of the first known sites of unambiguous dune activity (migration and deflation). However, those early detections used lower resolution images over longer temporal baselines (versus the HIRISE data now available), leaving some measurements poorly constrained. New orbital and surface observations of Endeavour show multiple spatial (cm, m, km) and temporal (seasons, Mars year) scales of aeolian-driven surface change, which confirms earlier reports. Dome dunes in the eastern portion of the crater persistently deflate, disseminating dark sand across lighter-toned regolith and/or eroded bright dust, and likely contribute to the crater interior's episodic decreases in orbital albedo measurements. Other dome dunes are detected with the highest migration rates (4-12 m per Mars year) and volumetric sand fluxes reported yet for Mars. Estimated dune construction times or "turnover times" here and elsewhere on Mars are significantly shorter than martian obliquity cycles, implying that it is not necessary to invoke paleoclimate wind regimes to explain current dune morphologies. Located on the crater rim, the Opportunity rover detected evidence for near- and far-field aeolian-driven activity, with observations of spherules/sand movement in the rover workspace, bedform albedo alteration, and dust-lifting events. Observations of intracrater dunes show periodic shifting dark streaks that significantly constrain local wind regimes (directionality and seasonality). Constraints on wind directions from surface and orbital images show that aeolian bedforms can be extremely active in bi-, and possibly tri-, modal wind regimes, and during periods without major dust storms. (C) 2014 Elsevier Inc. All rights reserved.
引用
收藏
页码:275 / 290
页数:16
相关论文
共 20 条
  • [1] Phyllosilicates and sulfates at Endeavour Crater, Meridiani Planum, Mars
    Wray, J. J.
    Dobrea, E. Z. Noe
    Arvidson, R. E.
    Wiseman, S. M.
    Squyres, S. W.
    McEwen, A. S.
    Mustard, J. F.
    Murchie, S. L.
    [J]. GEOPHYSICAL RESEARCH LETTERS, 2009, 36
  • [2] Surface albedo observations at Gusev Crater and Meridiani Planum, Mars
    Bell, J. F., III
    Rice, M. S.
    Johnson, J. R.
    Hare, T. M.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-PLANETS, 2008, 113 (E6)
  • [3] Unraveling the History of Meridiani Planum, Mars: New Chemical Clues From the Rim of Endeavour Crater
    Fraeman, Abigail A.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-PLANETS, 2018, 123 (03) : 690 - 694
  • [4] Orbital observations of contemporary dune activity in Endeavor crater, Meridiani Planum, Mars
    Chojnacki, Matthew
    Burr, Devon M.
    Moersch, Jeffrey E.
    Michaels, Timothy I.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-PLANETS, 2011, 116
  • [5] Mossbauer analysis of the surface of mars with MIMOS II at Meridiani Planum and Gusev crater
    Klingelhöfer, G
    [J]. INDUSTRIAL APPLICATIONS OF THE MOSSBAUER EFFECT, 2005, 765 : 369 - 377
  • [6] Mars Reconnaissance Orbiter and Opportunity observations of the Burns formation: Crater hopping at Meridiani Planum
    Arvidson, R. E.
    Bell, J. F., III
    Catalano, J. G.
    Clark, B. C.
    Fox, V. K.
    Gellert, R.
    Grotzinger, J. P.
    Guinness, E. A.
    Herkenhoff, K. E.
    Knoll, A. H.
    Lapotre, M. G. A.
    McLennan, S. M.
    Ming, D. W.
    Morris, R. V.
    Murchie, S. L.
    Powell, K. E.
    Smith, M. D.
    Squyres, S. W.
    Wolff, M. J.
    Wray, J. J.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-PLANETS, 2015, 120 (03) : 429 - 451
  • [7] Observations of an aeolian landscape: From surface to orbit in Gale Crater
    Day, Mackenzie
    Kocurek, Gary
    [J]. ICARUS, 2016, 280 : 37 - 71
  • [8] Diverse Lithologies and Alteration Events on the Rim of Noachian-Aged Endeavour Crater, Meridiani Planum, Mars: In Situ Compositional Evidence
    Mittlefehldt, David W.
    Gellert, Ralf
    vanBommel, Scott
    Ming, Douglas W.
    Yen, Albert S.
    Clark, Benton C.
    Morris, Richard V.
    Schroder, Christian
    Crumpler, Larry S.
    Grant, John A.
    Jolliff, Bradley L.
    Arvidson, Raymond E.
    Farrand, William H.
    Herkenhoff, Kenneth E.
    Bell, James F., III
    Cohen, Barbara A.
    Klingelhoefer, Goestar
    Schrader, Christian M.
    Rice, James W.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-PLANETS, 2018, 123 (05) : 1255 - 1306
  • [9] Characterization and mapping of surface physical properties of Mars from CRISM multi-angular data: Application to Gusev Crater and Meridiani Planum
    Fernando, J.
    Schmidt, F.
    Pilorget, C.
    Pinet, P.
    Ceamanos, X.
    Doute, S.
    Daydou, Y.
    Costard, F.
    [J]. ICARUS, 2015, 253 : 271 - 295
  • [10] Surface reflectance of Mars observed by CRISM/MRO: 2. Estimation of surface photometric properties in Gusev Crater and Meridiani Planum
    Fernando, J.
    Schmidt, F.
    Ceamanos, X.
    Pinet, P.
    Doute, S.
    Daydou, Y.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-PLANETS, 2013, 118 (03) : 534 - 559