首页> 外文期刊>Journal of geophysical research. Planets >doi.org/10.11728/cjss2016.05.610 Dune Casts Preserved by Partial Burial: The First Identification of Ghost Dune Pits on Mars
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doi.org/10.11728/cjss2016.05.610 Dune Casts Preserved by Partial Burial: The First Identification of Ghost Dune Pits on Mars

机译:doi.org/10.11728/cjss2016.05.610由部分埋葬保存的沙丘演员:第一次识别火星上的幽灵沙丘坑

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Eolian sediment transport is active on modern Mars and has been for billions of years. Dune fields dot the surface of the planet, and examples of preserved eolian strata confirm that dunes were active on ancient Mars. As is also true on Earth, most Martian eolian sandstones preserve only a small fraction of the strata that constituted ancient dunes, and whole dunes fields are rarely preserved. In this study, we focus on two fields of >300 pits each and compare the pit morphologies, scales, and orientations to modern Martian dunes. It is hypothesized that the pit fields studied in Noctis Labyrinthus and Hellas basin represent casts of dunes from two ancient dune fields that were partially buried in the Hesperian. The flood material concentrated in the interdune area then became indurated, while the loose eolian dune sands eroded away, leaving behind the ~102-m-scale dune-shaped pits or ghost dune pits. Modern barchan dunes in Oyama and Herschel craters are used for comparison to the pit fields, and the topography of these modern dunes is used to model pit morphologies after partial burial. Basalt flows and low-energy fluviolacustrine deposition are possible mechanisms for partial burial. The potential for eolian strata to be preserved within the pits at a once warm or water-rich interface makes the pits of interest for astrobiology. The inferred ancient dune fields record in their morphology a wind regime that differs from the modern and provide rare evidence of whole dune field preservation.
机译:Eolian沉积物运输在现代火星上活跃,已有数十亿年。沙丘场点球的地球表面,保存的EolianStrat塔的例子确认沙丘在古火星上活跃。由于地球上也是如此,大多数火星Eolian砂岩只保留了构成古老沙丘的小层次,并且整个沙丘场很少被保留。在这项研究中,我们专注于每个> 300型坑的两个领域,并比较现代火星沙丘的坑形态,鳞片和方向。假设诺克利斯迷宫和Hellas盆地中研究的坑领域代表了来自两个古老的沙丘的演员,这些古老的沙丘是部分埋葬在Hesperian的田间。集中在经历区的洪水材料随后被疲惫不堪,而松散的风水沙丘砂被侵蚀,留下了〜102米级的沙丘形坑或鬼的沙丘坑。 Oyama和Herschel Craters的现代Barchan沙丘用于与坑领域的比较,这些现代沙丘的地形用于在部分埋葬后模拟坑形态。玄武岩流动和低能量氟易化沉积是部分埋葬的可能机制。 Eolian Strata在坑里保存在坑内的凹坑中,富有的宽处界面使得天体学的凹坑感兴趣。推断古老的沙丘领域在他们的形态中记录了一种与现代的风格,并提供整个沙丘现场保存的罕见证据。

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