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Seas under ice: Stability of liquid-water oceans within icy worlds

机译:冰下的海洋:冰冷世界中液态水海洋的稳定性

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摘要

The present-day existence of internal oceans under the outer ice shell of several icy satellites of the Solar System has been recently proposed. The presence of antifreeze substances decreasing ice's melting point (and tidal heating in Europa's case) has been generally believed to allow the stability of such oceans; limited cooling of the water (ice plus liquid) layer, due to stability against convection or to stagnant lid convection in the icy shell, have been also considered. Here we propose that even pure liquid-water oceans could survive today within several icy worlds, and we consider some factors affecting thermal modeling in these bodies. So, the existence of such oceans would be a natural consequence of the physical properties of water ice, independently from the addition of antifreeze substances or any other special conditions. The inclusion of these substances would contribute to expand the conditions for water to stay liquid and to increase ocean's volume.
机译:最近,有人提出了太阳系几颗冰卫星的外层冰壳下现存的内部海洋。人们普遍认为,防冻剂的存在会降低冰的熔点(在欧罗巴的情况下会降低潮汐加热),从而使这种海洋更加稳定。还考虑到由于对流的稳定性或冰壳中盖子对流的停滞而限制了水(冰加液体)层的有限冷却。在这里,我们提出,即使纯净的液态水海洋也可以在几个冰冷的世界中生存下来,并且我们考虑了影响这些物体热模拟的一些因素。因此,这种海洋的存在将是水冰物理性质的自然结果,而与添加防冻物质或任何其他特殊条件无关。包含这些物质将有助于扩大水保持液态的条件,并增加海洋的体积。

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