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首页> 外文期刊>Transactions of the Japan society for aeronautical and space sciences >Long-Term Evolution of Geosynchronous Orbital Debris with High Area-to-Mass Ratios
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Long-Term Evolution of Geosynchronous Orbital Debris with High Area-to-Mass Ratios

机译:高面积质量比的地球同步轨道碎片的长期演化

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摘要

The long-term evolution, over 54 years, of a sample of objects released in geostationary orbit with area-to-mass ratios (A/M) up to 50 m~2/kg was analyzed, taking into account geopotential harmonics (8 × 8), luni-solar perturbations, direct solar radiation pressure with eclipses and, when applicable, air drag. The results indicate that objects with A/M up to 25 m~2/kg might explain the recently discovered debris population with mean motions of about one revolution per day and orbital eccentricities as high as 0.6. At so large area-to-mass ratios, the orbital evolution was mainly driven by solar radiation pressure. Although the general behavior observed was the same in all studied cases, the details of the evolution depended on the initial conditions. The simulated objects with A/M < 37 m~2/kg were characterized by an orbital lifetime > 54 years, while for A/M > 40-45 m~2/kg, the exact value again depending on the initial conditions, the lifetime dropped rapidly to a few months with increasing values of the area-to-mass ratio. A growth of A/M had, as a consequence, a larger amplitude of the yearly oscillations that dominate the eccentricity evolution, in addition to a faster and wider orbit pole clockwise precession.
机译:分析了地球静止轨道上释放的物体样品在54年内的长期演变,其面积质量比(A / M)高达50 m〜2 / kg,同时考虑了地势谐波(8× 8),单日太阳扰动,日食直接太阳辐射压力以及空气阻力(如适用)。结果表明,A / M高达25 m〜2 / kg的物体可能解释了最近发现的碎片群,这些碎片群的平均运动量约为每天一圈,轨道偏心率高达0.6。在如此大的面积质量比下,轨道演化主要由太阳辐射压力驱动。尽管在所有研究案例中观察到的一般行为都是相同的,但进化的细节取决于初始条件。 A / M <37 m〜2 / kg的模拟物体的轨道寿命> 54年,而对于A / M> 40-45 m〜2 / kg的轨道,其精确值再次取决于初始条件,寿命随面积质量比值的增加而迅速下降到几个月。结果,A / M的增长除了主导轨道的顺时针进动变快和变宽外,还有较大的年度振荡振幅,这些振幅主导了偏心率的演变。

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