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首页> 外文期刊>The Astrophysical Journal. Supplement Series >Hydrodynamic Simulations of Asymmetric Propeller Structures in Saturn's Rings
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Hydrodynamic Simulations of Asymmetric Propeller Structures in Saturn's Rings

机译:土星戒指不对称螺旋桨结构的流体动力学模拟

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摘要

The observation of the non-Keplerian behavior of propeller structures in Saturn's outer A ring raises the question: how does the propeller respond to the wandering of the central embedded moonlet? Here, we study numerically how the structural imprint of the propeller changes for a libration of the moonlet. It turns out that the libration induces an asymmetry in the propeller, which depends on the libration period and amplitude of the moonlet. Further, we study the dependence of the asymmetry on the libration period and amplitude for a moonlet with a 400 m Hill radius, which is located in the outer A ring. This allows us to apply our findings to the largest known propeller Bleriot, which is expected to be of a similar size. For Bleriot, we can conclude that, supposing the moonlet is librating with the largest observed period of 11.1 yr and an azimuthal amplitude of about 1845 km, a small asymmetry should be measurable but depends on the moonlet's libration phase at the observation time. The longitude residuals of other trans-Encke propellers (e.g., Earhart) show amplitudes similar to Bleriot, which might allow us to observe larger asymmetries due to their smaller azimuthal extent, allowing us to scan the whole gap structure for asymmetries in one observation. Although the librational model of the moonlet is a simplification, our results are a first step toward the development of a consistent model for the description of the formation of asymmetric propellers caused by a freely moving moonlet.
机译:观察土星外部环中螺旋桨结构的非开普勒行为提出了问题:螺旋桨如何应对中央嵌入月的徘徊?在这里,我们在数值上学习螺旋桨的结构压印改变了月光的影响。事实证明,LIV失调在螺旋桨中引起不对称,这取决于月球的自由周期和幅度。此外,我们研究了不对称对800米山半径的Liblation和幅度的依赖性,该半径位于外圈中。这使我们可以将我们的研究结果应用于最大的已知螺旋桨Bleriot,这预计将具有类似的尺寸。对于Bleriot,我们可以得出结论,假设月球增分较大,观测到的11.1 yr最大,方位角振幅约为1845公里,应测量小的不对称,但取决于观察时间在观察时间的Limlet的衡量阶段。其他跨型螺旋桨(例如,earhart)的经度残差显示出类似于Bleriot的幅度,这可能使我们能够观察由于它们较小的方位角范围内的更大的不对称性,允许我们在一个观察中扫描整个间隙结构以进行不对称的不对称结构。尽管月球的陈词模型是一种简化,但我们的结果是朝着开发一致模型的第一步,用于描述由自由移动的月状导致的不对称螺旋桨的形成。

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