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Features of the Dynamics of Objects Moving in the Neighborhood of the 1: 3 Resonance with the Earth's Rotation

机译:与地球自转在1:3共振附近运动的物体动力学特性

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The paper presents the results of the study of the dynamic structure of near-Earth orbital space in the region of the 1 : 3 resonance with the Earth's rotation. The results of an extensive numerical-analytical experiment to study the orbital evolution of objects moving in the range of semimajor axes from 20250 to 20280 km, with inclinations from 0 to 90 degrees, are presented. The zones of action of five components of orbital resonance and apsidal-nodal secular resonances of low orders are revealed. Maps of the distribution of identified resonances are given. The analysis of the dynamic structure of the orbital space using the fast Lyapunov characteristic (MEGNO) is presented, and the MEGNO map of the region in the plane section (orbit inclination, semimajor axis) is given. It has been shown that the dynamic evolution of most of the orbits is chaotic, which is due to the superposition of different types of resonances.
机译:本文介绍了与地球自转成1:3共振的区域中近地球轨道空间动力学结构的研究结果。提出了广泛的数值分析实验的结果,以研究在20250至20280 km的半长轴范围内,倾斜度为0至90度的物体的轨道演化。揭示了低阶轨道共振和两性节点的长期共振的五个分量的作用区域。给出了识别出的共振分布图。提出了利用快速李雅普诺夫特征(MEGNO)分析轨道空间动态结构的方法,并给出了平面截面区域(轨道倾角,半长轴)的MEGNO图。已经表明,大多数轨道的动态演化是混沌的,这是由于不同类型共振的叠加所致。

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