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Superrotation on Venus, on Titan, and Elsewhere

机译:金星上的叠加,泰坦和其他地方

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The superrotation of the atmospheres of Venus and Titan has puzzled dynamicists for many years and seems to put these planets in a very different dynamical regime from most other planets. In this review, we consider how to define superrotation objectively and explore the constraints that determine its occurrence. Atmospheric superrotation also occurs elsewhere in the Solar System and beyond, and we compare Venus and Titan with Earth and other planets for which wind estimates are available. The extreme superrotation on Venus and Titan poses some difficult challenges for numerical models of atmospheric circulation, much more difficult than for more rapidly rotating planets such as Earth or Mars. We consider mechanisms for generating and maintaining a superrotating state, all of which involve a global meridional overturning circulation. The role of nonaxisymmetric eddies is crucial, however, but the detailed mechanisms may differ between Venus, Titan, and other planets.
机译:金星和泰坦大气的叠加令人困惑的动态人士多年来,似乎将这些行星放在大多数其他星球的一个非常不同的动态政权中。 在此评论中,我们考虑如何客观地定义叠加功能,并探索确定其发生的约束。 大气叠加件也发生在太阳系及以后的其他地方,我们将金星和泰坦与地球和其他行星进行比较,其中有风估算。 金星和泰坦的极端超级叠加给大气循环的数值模型带来了一些艰难的挑战,比诸如地球或火星等更快速的旋转行星更困难。 我们考虑产生和维持叠加状态的机制,所有这些都涉及全球化的经络倾覆循环。 然而,非共激漩涡的作用至关重要,但是条件,金星,泰坦和其他行星之间的详细机制可能不同。

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