月娥和火星上的加压地下水系统:来自小尺度形态学和实验的见解

GeoResJ Pub Date : 2015-12-01 DOI:10.1016/j.grj.2015.08.001
Wouter A. Marra , Ernst Hauber , Steven M. de Jong , Maarten G. Kleinhans
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引用次数: 16

摘要

火星上的流出通道揭示了过去存在的水,可能是从加压的地下水水库释放出来的。我们的目标是提高我们对这种流出系统的理解,以便更好地约束火星上过去的水文条件。我们研究了火星上可能的加压地下水流出系统的形态,并将它们与景观演化实验进行了比较。这些实验表明,切割河道和经典的流出河道一样,是在形态发育的最后一个侵蚀阶段形成的。在此之前,由于渗透造成的快速失水,形成了沉积裂片。在火星上,我们观察到月球和奥斐平原地下水流出不同阶段的相似形态。在实验中,坑是由地下水的压力形成的,而流出通道源区的坑与区域构造有关,并不是由地下水单独形成的。断裂、下沉和崩塌可能引发了承压含水层的流出。这种情况与从早期西西世到至少亚马逊中期存在一个或几个冰冻圈限制的含水层是一致的。在较低海拔地区,更大、更发达的流出系统在空间上呈现出明显的趋势,这表明从小裂片到大流出通道的特征来自一个共同的含水层或具有类似压力的含水层。所需的冰冻圈表明气候寒冷,即使在不利于液态水持续存在的大气条件下也能使地下水流出。
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Pressurized groundwater systems in Lunae and Ophir Plana (Mars): Insights from small-scale morphology and experiments

Outflow channels on Mars reveal the past presence of water, possibly released from pressurized groundwater reservoirs. We aim to improve our understanding of such outflow systems in order to better constrain past hydrological conditions on Mars. We investigate the morphology of possible pressurized groundwater outflow systems on Mars and compare them to landscape evolution experiments. These experiments show that incised channels, like the classic outflow channels, form in a last, erosional, stage in morphological development. This is preceded by the formation of sedimentary lobes due to rapid water loss by infiltration. On Mars, we observe similar morphologies related to different stages of groundwater outflow in Lunae and Ophir Plana. In the experiments, pits formed by the pressure of the groundwater, whereas the pits in the source regions of the outflow channels relate to the regional tectonic structure and are not formed by groundwater alone. Faulting, subsidence and collapse likely triggered outflow from a pressurized aquifer. This scenario is consistent with the presence of one or several cryosphere-confined aquifers from the Early Hesperian to at least the middle Amazonian. A pronounced spatial trend of larger and further developed outflow systems at lower elevations suggests that features ranging from small lobes to large outflow channels were sourced from a common aquifer or from aquifers with similar pressures. The required cryosphere indicates a cold climate and enables groundwater outflow even under atmospheric conditions unfavorable for sustained presence of liquid water.

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