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首页> 外文期刊>Geology >Hesperian equatorial thermokarst lakes in Ares Vallis as evidence for transient warm conditions on Mars
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Hesperian equatorial thermokarst lakes in Ares Vallis as evidence for transient warm conditions on Mars

机译:战神瓦里斯的Hesperian赤道热喀斯特湖是火星短暂变暖条件的证据

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摘要

On Earth, permafrost thawing is linked to climate warming. Similarly, on Mars, permafrost degradation, described from mid-latitude and equatorial settings, is likely linked to global or regional climate change. Putative thermokarst depressions identified on Mars are widely considered to be the result of sublimation, evaporation, or thawing of an ice-rich substrate. The possibility that the depressions formed by melting of permafrost to create alas-like lakes has been recently proposed, but is controversial, owing to the lack of primary evidence for liquid filling the depressions. Here we use high-resolution Mars Reconnaissance Orbiter Context Camera images and derived topographic data to characterize possible thermokarst terrain in Ares Vallis. The terrain comprises subcircular to irregular, flat-floored rimless topographic depressions that occur at varying elevations. We report the discovery of narrow channels connecting thermokarst-like depressions that provide evidence for the previous presence of ponded liquid water. Crater counts on these surfaces indicate resurfacing that is likely related to flood deposition of water-saturated sediments in Ares Vallis during the Hesperian (ca. 3.6–3.0 Ga). We infer that thermokarst lakes formed after flooding by thawing of ice within the sediments during transient warm periods in the Hesperian, a time previously considered to be too cold to permit ice thaw.
机译:在地球上,多年冻土融化与气候变暖有关。同样,在火星上的 ,从中纬度 和赤道环境描述的多年冻土退化很可能与全球或区域性的 气候变化有关。在火星上确定的 的推测的热喀斯特洼地被广泛认为是升冰, 蒸发或融冰的底物解冻的结果。最近有人提出了 由多年冻土融化形成 alas湖泊而形成的洼地的可能性,但由于缺乏 而引起争议液体填充 抑郁症的主要证据。在这里,我们使用高分辨率的火星侦察 轨道飞行器背景相机图像和派生的地形数据来 sup> 表征阿里斯瓦利斯的可能热喀斯特地形。 地形包括在不同高度发生的亚圆形到不规则,平坦的无边缘 地形凹陷。我们 报告发现了与类似热喀斯特地貌的 凹陷相连的狭窄通道的发现,这些凹陷通道为以前存在的 积水提供了证据。这些表面上的火山口计数表明 重铺可能与Hesperian时期Ares Vallis中水饱和的 沉积物的洪水沉积有关(约3.6–3.0 Ga)。我们推断,在黑波斯人短暂的温暖期 之前,沉积物内的冰被融化,从而形成了热喀斯特湖,此前人们认为这太冷了。 sup>允许冰融化。

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  • 来源
    《Geology》 |2010年第1期|71-74|共4页
  • 作者单位

    Department of Earth Science & Engineering, Imperial College London, South Kensington Campus, London SW7 2AZ, UK;

    Department of Earth Science & Engineering, Imperial College London, South Kensington Campus, London SW7 2AZ, UK;

    Mullard Space Science Laboratory, Department of Space and Climate Physics, University College London, Holmbury St Mary, Surrey RH5 6NT, UK;

    Mullard Space Science Laboratory, Department of Space and Climate Physics, University College London, Holmbury St Mary, Surrey RH5 6NT, UK;

    Mullard Space Science Laboratory, Department of Space and Climate Physics, University College London, Holmbury St Mary, Surrey RH5 6NT, UK;

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