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首页> 外文期刊>Journal of geophysical research. Planets >Icemelting and downward transport ofmeltwater by two-phase flow in Europa's ice shell
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Icemelting and downward transport ofmeltwater by two-phase flow in Europa's ice shell

机译:欧罗巴冰壳中的两相流量通过两相流量进行融化水的运输和向下运输

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摘要

With its young surface, very few impact craters, and the abundance of tectonic and cryovolcanic features, Europa has likely been subjected to relatively recent endogenic activity. Morphological analyses of chaos terrains and double ridges suggest the presence of liquid water within the ice shell a few kilometers below the surface, which may result from enhanced tidal heating. A major issue concerns the thermal/ gravitational stability of these water reservoirs. Here we investigate the conditions under which water can be generated and transported through Europa's ice shell. We address particularly the downward two-phase flow by solving the equations for a two-phase mixture of water ice and liquid water in one-dimensional geometry. In the case of purely temperate ice, we show that water is transported downward very efficiently in the form of successive porosity waves. The time needed to transport the water from the subsurface region to the underlying ocean varies between ~1 and 100 kyr, depending mostly on the ice permeability. We further show that water produced in the head of tidally heated hot plumes never accumulates at shallow depths and is rapidly extracted from the ice shell (within less than a few hundred kiloyears). Our calculations indicate that liquid water will be largely absent in the near subsurface, with the possible exception of cold conductive regions subjected to strong tidal friction. Recently active double ridges subjected to large tidally driven strike-slip motions are perhaps the most likely candidates for the detection of transient water lenses at shallow depths on Europa.
机译:欧罗巴凭借其年轻的表面,很少的撞击火山口以及构造和冰冷的特征的丰度,可能会受到相对较新的内源性活性。对混乱地形和双脊的形态分析表明,在地表以下几公里处的冰壳中存在液态水,这可能是由于潮汐加热而导致的。一个主要问题涉及这些水库的热/重力稳定性。在这里,我们研究了可以通过欧罗巴的冰壳产生和运输水的条件。我们特别通过求解一维几何形状中水冰和液体水的两相混合物的方程来解决下降的两相流。在纯粹的温带冰的情况下,我们表明水是以连续的孔隙率波的形式非常有效地向下运输的。将水从地下区域运送到地下海洋所需的时间在〜1至100 kyr之间变化,这主要取决于冰的渗透性。我们进一步表明,在潮汐加热的热羽流中产生的水永远不会在浅水深处积聚,并从冰壳(不到几百公斤)中迅速提取。我们的计算表明,在近地下,液态水将在很大程度上不存在,除了遭受强潮汐摩擦的冷导电区外。最近有大量潮汐驱动滑动运动的近期活跃的双脊可能是在欧罗巴浅水深处检测瞬态水透镜的最有可能的候选者。

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