首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Closed drainage crater basins of the Martian highlands: Constraints on the early Martian hydrologic cycle
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Closed drainage crater basins of the Martian highlands: Constraints on the early Martian hydrologic cycle

机译:火星高地封闭的火山口盆地:火星早期水文循环的约束

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One hundred forty four crater basins with closed drainage have been mapped within the. Martian Noachian highlands that have influent but no outflow channels. The influent streambeds to these basins are characterized by steep gradients and elevation head losses on average of 1 km. These closed basins and influent fluvial channels provide a foundation to investigate the processes under which water was transferred among the early Martian atmosphere and groundwater reservoirs. Channel gradients reflect basin-controlled water table conditions, and the channel head losses suggest sustained drawdowns within the basins due to evaporation and/or sublimation-induced pumping of groundwater. Finite element modeling bf groundwater flow permits estimation of minimum rates for evaporation/sublimation for a reasonable set of boundary conditions and hydraulic conductivities, and suggests a Noachian environment with a minimum of 10-20 cm/yr of evaporation and/or sublimation. The flow models are unable ro be reconciled with channel gradients Without introduction of local precipitation. Acceptable solutions are found with a minimum of 1-2 cm/yr of groundwater recharge. [References: 19]
机译:其中有144个具有封闭排水系统的火山口盆地已被绘制出来。火星人Noachian高地,有水流但没有流出通道。这些盆地的入流河床的特点是陡峭的坡度和平均1 km的高程水头损失。这些封闭的盆地和河流入流通道为研究水在早期火星大气层和地下水库之间的转移过程提供了基础。河道坡度反映了流域控制的地下水位条件,而河道水头损失表明,由于蒸发和/或升华引起的地下水抽取,流域内水位持续下降。地下水流量的有限元建模可以针对合理的边界条件和水力传导率估算蒸发/升华的最小速率,并建议在Noachian环境中蒸发和/或升华的最小年限为10-20 cm / yr。在不引入局部降水的情况下,流量模型无法与通道梯度保持一致。发现可接受的解决方案是每年至少补充1-2厘米的地下水。 [参考:19]

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