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首页> 外文期刊>Geophysical Research Letters >Enceladus's internal ocean and ice shell constrained from Cassini gravity, shape, and libration data
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Enceladus's internal ocean and ice shell constrained from Cassini gravity, shape, and libration data

机译:土卫二的内部海洋和冰壳受到卡西尼号的重力,形状和解放数据的限制

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摘要

The intense plume activity at the South Pole of Enceladus together with the recent detection of libration hints at an internal water ocean underneath the outer ice shell. However, the interpretation of gravity, shape, and libration data leads to contradicting results regarding the depth of ocean/ice interface and the total volume of the ocean. Here we develop an interior structure model consisting of a rocky core, an internal ocean, and an ice shell, which satisfies simultaneously the gravity, shape, and libration data. We show that the data can be reconciled by considering isostatic compensation including the effect of a few hundred meter thick elastic lithosphere. Our model predicts that the core radius is 180-185km, the ocean density is at least 1030kg/m(3), and the ice shell is 18-22km thick on average. The ice thicknesses are reduced at poles decreasing to less than 5km in the south polar region.
机译:土卫二南极的强烈羽流活动以及最近发现的解放迹象表明,外层冰壳下方为内部水海洋。但是,对重力,形状和释放数据的解释导致有关海洋/冰界面深度和海洋总体积的结果相互矛盾。在这里,我们开发了一个由岩心,内部海洋和冰壳组成的内部结构模型,这些模型同时满足重力,形状和自由度数据。我们表明,可以通过考虑等静压补偿来调和数据,包括数百米厚的弹性岩石圈的影响。我们的模型预测,平均核心半径为180-185km,海洋密度至少为1030kg / m(3),而冰壳平均厚度为18-22km。在南极地区,极点处的冰厚度减小到小于5 km。

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