论文标题
对冰冷海洋世界的海洋环流的充满活力的限制
Energetic constraints on ocean circulations of icy ocean worlds
论文作者
论文摘要
在太阳系中的多个月亮上发现了全球冰覆盖的海洋,也可能是地球过去的特征。但是,关于这些被冰覆盖的海洋的动态的理解相对较少,这不仅影响了物理环境,还影响了任何潜在的生命及其可检测性。许多研究模拟了冰冷世界海洋的循环,但得出的结论似乎截然不同。为了更好地理解和缩小这些不同的结果,我们讨论了在冰覆盖的海洋上循环的充满活力的约束,尤其是集中在雪球,欧罗巴和埃塞拉德斯上。可以在冰覆盖的物体上驱动海洋循环的能量输入可能与边界的热量和盐通量以及海洋潮汐和库中有关。我们表明,通过冰盖的热量损失的固体芯加热可以驱动海洋循环,但是所产生的流量将相对较弱,并且会受到旋转的强烈影响。与冰盖边界上的冷冻和熔化相关的盐通量不太可能在能量上驱动循环,尽管当它们与湍流混合结合使用时可以塑造大规模循环。海潮和库可以为这种湍流提供能源,但是对于冰冷的月亮来说,这种能源的幅度仍然高度不确定,这为预测冰冷世界的海洋动态带来了一个主要障碍,并且仍然是未来研究的重要主题。
Globally ice-covered oceans have been found on multiple moons in the solar system and may also have been a feature of Earth's past. However, relatively little is understood about the dynamics of these ice-covered oceans, which affect not only the physical environment but also any potential life and its detectability. A number of studies have simulated the circulation of icy-world oceans, but have come to seemingly widely different conclusions. To better understand and narrow down these diverging results, we discuss energetic constraints for the circulation on ice-covered oceans, focusing in particular on Snowball Earth, Europa, and Enceladus. Energy input that can drive ocean circulation on ice-covered bodies can be associated with heat and salt fluxes at the boundaries as well as ocean tides and librations. We show that heating from the solid core balanced by heat loss through the ice sheet can drive an ocean circulation, but the resulting flows would be relatively weak and strongly affected by rotation. Salt fluxes associated with freezing and melting at the ice sheet boundary are unlikely to energetically drive a circulation, although they can shape the large-scale circulation when combined with turbulent mixing. Ocean tides and librations may provide an energy source for such turbulence, but the magnitude of this energy source remains highly uncertain for the icy moons, which poses a major obstacle to predicting the ocean dynamics of icy worlds and remains as an important topic for future research.