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首页> 外文期刊>Journal of geophysical research. Planets >Forced obliquity variations of Mercury
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Forced obliquity variations of Mercury

机译:迫使倾角变化的水银

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摘要

The spin pole of Mercury is very nearly, but not quite, aligned with its orbit pole. Tidal dissipation has driven the free obliquity to very small values, and the high rate of spin pole precession allows the forced obliquity variations to remain small despite significant variations in orbital inclination and eccentricity. We present calculations of the obliquity for a 10 million year time span, centered on the present. The obliquity remains small, with typical values of 2–4 minutes of arc. The dominant period of obliquity oscillations is 895 kyr, which is also the main period at which the orbital inclination varies. If the orbit pole precession rate were uniform, dissipation would have driven Mercury into a Cassini state, in which the spin pole and orbit pole remain coplanar with the invariable pole, as the spin pole precesses about the moving orbit pole. However, due to the nonuniform orbit precession rate, this simple coplanar configuration is not maintained, except on a mode-by-mode basis. That is, when the orbit pole motion is represented as a sum of normal modes of the coupled oscillations of the planetary system, the spin pole coprecesses with the orbit pole at each modal frequency. This is a generalization of Cassini's second and third laws of lunar rotation to the case of nonuniform orbit precession. We compare results of a linearized obliquity model with a numerical integration of the equations of motion. The two solutions agree at the level of a few seconds of arc.
机译:水星的自转极很近,但不是,与它的轨道。耗散推动自由倾斜小值,旋转杆的高速率旋进允许强迫倾角的变化保持小尽管显著变化轨道倾角和偏心。计算倾角的1000万年时间,集中在当下。倾角仍小,典型值2 - 4分钟的弧。倾斜振动是895可以,这也是轨道倾角的主要时期各不相同。制服,耗散会推动汞卡西尼号状态,杆和旋转轨道杆保持不变的共面杆,旋转杆绕着移动轨道。旋进率,这个简单的共面配置不是维护,除了一个mode-by-mode基础。运动是表示为正常模式的总和行星系统的耦合振荡,自旋与轨道杆杆coprecesses每一个模态频率。卡西尼号月球旋转第二和第三定律不均匀的情况下轨道进动。倾斜线性化模型的结果进行比较方程的数值积分运动。几秒钟的弧。

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