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The Contraction of Satellite Orbits under the Influence of Air Drag. Part VI. Near-Circular Orbits with Day-to-Night Variation in Air Density

机译:空气阻力影响下卫星轨道的收缩。第六部分。近圆轨道与空气密度的日夜变化

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The theory for the effect of air drag on satellite orbits was developed in Parts I-V of this series of papers on the assumption that the angular motion of perigee is controlled by gravitational forces and is not affected by air drag. If the orbital eccentricity is less than about 0.01, however, and the atmosphere exhibits a substantial day-to-night variation in density, the air drag itself significantly affects the angular motion of perigee. In these circumstances the mathematical theory takes a different and more complicated form, which is developed in the present paper. General equations are derived for the rate of change of parameters representing the eccentricity and argument of perigee. Complete analytical solutions for the time variations of these parameters are obtained for orbits of very small eccentricity in two different forms, for (1) high drag, i.e. short lifetime, and (2) low drag. The results are illustrated by numerical examples. (Author)

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