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首页> 外文期刊>Advances in space research >The semi-analytical analysis of orbital evolution around an asteroid under the effects of the C_(20) term, the solar radiation pressure and the asteroid's orbital eccentricity
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The semi-analytical analysis of orbital evolution around an asteroid under the effects of the C_(20) term, the solar radiation pressure and the asteroid's orbital eccentricity

机译:在C_(20)项,太阳辐射压力和小行星的轨道偏心率的影响下对小行星周围的轨道演化的半解析分析

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This paper aims to develop a semi-analytical method of propagating orbital motion near the equatorial plane of an asteroid, considering the combined effects of the asteroid's oblateness (the C-20 term), the solar radiation pressure (SRP) and the asteroid's orbital eccentricity around the Sun (e(s)). In the asteroid-centered frame, the Hamiltonian of the orbital motion is derived with Poincare variables. It is firstly averaged over the orbital motion around the asteroid and then averaged over the asteroid's eccentric orbital motion around the Sun. Time-explicit analytical solutions of the orbital eccentricity and inclination are obtained. The Lie transformation is applied to recover the eliminated oscillating terms of the inclination during the second average for a complete solution. We analyze the validity of these solutions for different semi-major axes and different values of area-to-mass ratios (A/m). We demonstrate the importance of considering the asteroid's orbital eccentricity around the Sun and its role in enlarging the amplitude of orbital eccentricity for different Alm and orbital geometries. The solutions developed in this paper improve the knowledge of secular orbital evolution around asteroid. They can be applied to fast prediction of long-term orbital evolutions around near Earth asteroids (NEAs). (C) 2018 COSPAR. Published by Elsevier Ltd. All rights reserved.
机译:本文的目的是考虑小行星的扁圆度(C-20项),太阳辐射压力(SRP)和小行星的轨道离心率的综合影响,开发一种在小行星的赤道面附近传播轨道运动的半解析方法。在太阳周围。在以小行星为中心的框架中,轨道运动的哈密顿量是利用庞加莱变量得出的。首先对围绕小行星的轨道运动进行平均,然后对围绕太阳的小行星的离心运动进行平均。得到了轨道偏心率和倾角的时间显式解析解。应用Lie变换来恢复第二个平均值期间消除的倾斜度的振荡项,以得到一个完整的解。我们分析了这些解决方案对于不同的半长轴和不同的面积质量比(A / m)值的有效性。我们证明了考虑小行星围绕太阳的轨道偏心率及其在扩大不同Alm和轨道几何形状的轨道偏心幅度中的作用的重要性。本文开发的解决方案改善了围绕小行星的长期轨道演化的知识。它们可用于快速预测近地小行星(NEA)附近的长期轨道演变。 (C)2018年COSPAR。由Elsevier Ltd.出版。保留所有权利。

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