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首页> 外文期刊>Geosphere >Dichotomies in the fluvial and alluvial fan deposits of the Aeolis Dorsa, Mars: Implications for weathered sediment and paleoclimate
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Dichotomies in the fluvial and alluvial fan deposits of the Aeolis Dorsa, Mars: Implications for weathered sediment and paleoclimate

机译:火星风神多萨的河流和冲积扇沉积物中的二分法:对风化沉积物和古气候的影响

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摘要

The Aeolis Dorsa region of Mars preserves many ancient and topographically inverted fluvial deposits, some of which represent analogs to pre-vegetated meandering fluvial deposits on Earth. The regional stratigraphy of the Aeolis Dorsa preserves a tradition from deposits of meandering fluvial channels to alluvial fans. On Earth, fluvial channel and alluvial fan environments have different hydrologic regimes, sedimentary conditions, and depositional slopes, implying that the Aeolis Dorsa region experienced significant changes in hydrology, sedimentology, and topography. Here, we map deposits and derive stratigraphic columns of four local areas—two in southeast Aeolis Dorsa and two in the northwest—to elucidate the local hydrologic processes and sedimentary conditions coincident with regional change. Formative processes and conditions are inferred from shared morphologic attributes between Martian and terrestrial analog deposits. Results suggest mutually consistent local histories; all areas show a transition from fluvial deposits to alluvial fan deposits. However, the hydrologic processes and sedimentary conditions were non-uniform. Specifically, local deposits form two dichotomies: (1) southeast Aeolis Dorsa preserves meandering fluvial deposits, whereas the northwest preserves only wide channel fills; (2) southeast Aeolis Dorsa includes alluvial fans with debris-flow deposits, but northwest fans include only sheetflood or channelized deposits. A relative abundance of cohesive, weathered sediment in southeast Aeolis Dorsa explains both the fluvial meandering channels and debris flows on alluvial fans in those localities. Greater weathering in southeast Aeolis Dorsa is consistent with previous theories of enhanced snowmelt or orographic precipitation in southeast Aeolis Dorsa.
机译:火星的风神多萨地区保存了许多古老的和地形上倒置的河流沉积物,其中一些代表了地球上预先植被蜿蜒的河流沉积物的类似物。风神多尔萨地区地层保留了从蜿蜒的河流通道到冲积扇的沉积的传统。在地球上,河道和冲积扇环境具有不同的水文状况,沉积条件和沉积坡度,这意味着风神多萨地区的水文,沉积学和地形发生了重大变化。在这里,我们绘制了沉积物图,并得出了四个局部地区的地层柱面,其中两个位于东南风神多萨(Aeolis Dorsa),两个则位于西北部。从火星和陆地类似物沉积之间共有的形态学特征推断出形成过程和条件。结果表明当地历史相互一致。所有地区都显示出从河流沉积到冲积扇状沉积的过渡。然而,水文过程和沉积条件是不均匀的。具体来说,本地沉积物形成两个二分法:(1)东南的风神多萨保留了蜿蜒的河床沉积物,而西北仅保留了宽阔的河道填充物; (2)东南的风神多尔萨(Aeolis Dorsa)包括冲积扇和泥石流沉积物,而西北扇仅包括片状洪水或渠道化沉积物。东南风神多萨的黏性风化沉积物相对丰富,解释了这些地区冲积扇的河道蜿蜒曲折和泥石流。东南风神多萨地区的更大风化与先前关于东南风神多萨地区的融雪或地形降水增加的理论相一致。

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