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首页> 外文期刊>Journal of geophysical research. Planets >Complex evolution of paleolacustrine systems on Mars: An example from the Holden crater
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Complex evolution of paleolacustrine systems on Mars: An example from the Holden crater

机译:复杂的paleolacustrine系统进化火星:一个例子从霍尔登环形山

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摘要

The ~150 km wide Holden crater lies in an area characterized by high density of valley networks implying conditions conducive to forming of water-related environments. We undertook geological mapping and a stratigraphic survey in order to probe the evolution of water-related landforms and their paleoenvironmental implications. Our investigations lead us to propose that the Holden area was subjected to a “wet” lacustrine phase of Hesperian age and an “icy” phase during the Amazonian. Deltaic, coastal, and lacustrine environments occurred during the “wet” phase, some displaying a cyclic depositional pattern presumably related to autogenic processes. Water was delivered to the basin by the Uzboi Vallis and by surface runoff channels from a series of drainage basins along the crater walls. Fan delta geometries and coastal onlap enabled estimation of major water levels. Two levels of major stand of the water have been recognized, possibly reflecting allogenic controls. Geologic units related to this “wet” lacustrine phase were subsequently eroded by glacial abrasion and plucking and were disconformably overlain by glacial deposits of Amazonian age, defining an “icy” phase. These features are consistent with a warm-based glacier entering the Holden crater through the wide Uzboi Vallis to form a proglacial lake in the central part of the crater. Changes in sedimentary units reflect changes of depositional environments probably connected with climatic variation.
机译:~ 150公里宽的霍尔顿陨石坑位于一个区域以高密度的河谷网络这有利于形成的条件与水有关的环境。地质填图和地层调查为了调查与水相关的进化地貌和古的影响。霍尔顿区受到提出“湿”湖阶段的年龄和一个西方人在亚马逊“冰冷”的阶段。沿海和湖泊环境中发生在“湿”阶段,一些显示循环沉积模式可能有关自发的过程。盆地的Uzboi谷地和地表径流渠道的一系列水系流域坑壁。海岸上超使估计的主要水的水平。已经确认,可能反映了呢同种异体的控制。这种“湿”随后被湖阶段由冰川侵蚀磨损和采摘假整合的表面的冰川沉积物亚马逊的年龄,定义一个“冰冷”的阶段。功能符合warm-based冰川通过宽Uzboi进入霍尔登环形山在中央谷地形成冰前的湖坑的一部分。反映沉积环境的变化可能与气候变化有关。

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