...
首页> 外文期刊>Journal of geophysical research. Planets >Complex evolution of paleolacustrine systems on Mars: An example from the Holden crater
【24h】

Complex evolution of paleolacustrine systems on Mars: An example from the Holden crater

机译:火星上古拉斯考特林系统的复杂演化:以霍尔顿火山口为例

获取原文
获取原文并翻译 | 示例
           

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:约150公里宽的霍顿火山口位于一个以高谷底网络密度为特征的地区,这暗示着有利于形成与水有关的环境的条件。我们进行了地质制图和地层调查,以探讨与水有关的地貌的演化及其古环境的意义。我们的调查使我们提出,霍顿地区经历了黑斯佩尔时代的“湿”湖相阶段和亚马逊河时期的“冰冷”阶段。三角洲,沿海和湖相环境发生在“湿润”阶段,有些环境表现出周期性的沉积模式,大概与自生过程有关。乌兹别克族瓦利斯河(Uzboi Vallis)和地表径流通道将水从火山口壁上的一系列流域输送到流域。扇形三角洲的几何形状和沿海重叠可估算主要水位。人们已经认识到水的两个主要等级,这可能反映了同种异体控制。随后,与该“湿”湖相有关的地质单位被冰川磨蚀和拔毛作用侵蚀,并被亚马逊时代的冰川沉积物覆盖,形成了“冰冷”相。这些特征与温暖的冰川一致,该冰川通过宽阔的Uzboi Vallis进入Holden火山口,在火山口的中部形成一个冰河湖。沉积单位的变化反映了可能与气候变化有关的沉积环境的变化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号