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Formation of recent martian gullies through melting of extensive water-rich snow deposits

机译:通过大量积水丰富的积雪融化形成最近的火星沟

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The observation of gullies on Mars indicates the presence of liquid water near the surface in recent times(1,2), which is difficult to reconcile with the current cold climate. Gullies have been proposed to form through surface runoff from subsurface aquifers(1,3) or through melting of near-surface ice under warmer conditions(4). But these gullies are observed to occur preferentially in cold mid-latitudes(2), where the presence of liquid water is less likely, and on isolated surfaces where groundwater seepage would not be expected, making both potential explanations unsatisfactory. Here I show that gullies can form by the melting of water-rich snow that has been transported from the poles to midlatitudes during periods of high obliquity within the past 10(5) to 10(6) years (refs 5, 6). Melting within this snow(7) can generate sufficient water to erode gullies in about 5,000 years. My proposed model for gully formation is consistent with the age and location of the gullies, and it explains the occurrence of liquid water in the cold mid-latitudes as well as on isolated surfaces. Remnants of the snowpacks are still present on mid-latitude, pole-facing slopes, and the recent or current occurrence of liquid water within them provides a potential abode for life. [References: 26]
机译:在火星上观察到的沟壑表明,最近在地表附近存在液态水(1,2),这很难与当前的寒冷气候相协调。沟渠被提出是通过地下含水层的地表径流形成的(1,3),或者是在较温暖的条件下通过近地表冰的融化而形成的(4)。但是,这些沟壑被发现优先发生在寒冷的中纬度地区(2),那里很少有液态水的存在,并且在孤立的地面上不会出现地下水的渗入,这两种潜在的解释都不能令人满意。在这里,我证明了在过去10(5)到10(6)年高倾角期间,从极地运到中纬度的富含水的积雪融化会形成沟壑(参考文献5、6)。在这雪中融化(7)可以产生足够的水,在大约5,000年的时间内侵蚀沟壑。我提出的沟壑形成模型与沟壑的年龄和位置一致,它解释了在寒冷的中纬度地区以及孤立的表面上液态水的出现。积雪的残骸仍然存在于中纬度,两极面向的斜坡上,并且其中最近或当前出现的液态水为生命提供了潜在的居所。 [参考:26]

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