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On the lunar node resonance of the orbital plane evolution of the Earth's satellite orbits

机译:在月球节点上,地球卫星轨道的轨道平面演变的共振

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摘要

This paper aims to investigate the effects of lunar node resonance on the circular medium Earth orbits (MEO). The dynamical model is established in classical Hamiltonian systems with the application of Lie transform to remove the non-resonant terms. Resonant condition, stability and phase structures are studied. The lunar node resonance occurs when the secular changing rates of the orbital node (with respect to the equator) and the lunar node (with respect to the ecliptic) form a simple integer ratio. The resonant conditions are satisfied for both inclined and equatorial orbits. The orbital plane would have long period (with typical timescales of several centuries) fluctuation due to the resonance.
机译:本文旨在研究月球节点共振对圆形中地球轨道(MEO)的影响。在经典哈密顿系统中建立了动力学模型,并应用李变换来消除非共振项。研究了共振条件,稳定性和相结构。当轨道节点(相对于赤道)和月球节点(相对于黄道)的长期变化率形成简单的整数比时,就会发生月球节点共振。倾斜和赤道轨道都满足谐振条件。由于共振,轨道平面将具有较长的周期(典型的时间尺度为几个世纪)波动。

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