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首页> 外文期刊>Journal of Geodetic Science >The zero gravity curve and surface and radii for geostationary and geosynchronous satellite orbits
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The zero gravity curve and surface and radii for geostationary and geosynchronous satellite orbits

机译:对地静止和对地同步卫星轨道的零重力曲线以及表面和半径

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摘要

A geosynchronous satellite orbits the Earth along a constant longitude. A special case is the geostationary satellite that is located at a constant position above the equator. The ideal position of a geostationary satellite is at the level of zero gravity, i.e. at the geocentric radius where the gravitational force of the Earth equals the centrifugal force. These forces must be compensated for several perturbing forces, in particular for the lunisolar tides. Considering that the gravity field of the Earth varies not only radially but also laterally, this study focuses on the variations of zero gravity not only on the equator (for geostationary satellites) but also for various latitudes. It is found that the radius of a geostationary satellite deviates from its mean value of 42164.2 km only within ±2 m, mainly due to the spherical harmonic coefficient J22, which is related with the equatorial flattening of the Earth. Away from the equator the zero gravity surface deviates from the ideal radius of a geosynchronous satellite, and more so for higher latitudes. While the radius of the former surface increases towards infinity towards the poles, the latter decreases about 520 m from the equator to the pole. Tidal effects vary these radii within ±2.3 km.
机译:地球同步卫星沿着恒定的经度绕地球旋转。一个特殊情况是对地静止卫星,它位于赤道上方的恒定位置。对地静止卫星的理想位置是在零重力的水平,即在地心半径处,地球的重力等于离心力。这些力必须补偿几种扰动力,尤其是对日月潮。考虑到地球的重力场不仅在径向上而且在横向上都发生变化,因此,本研究的重点不仅是赤道(对地静止卫星)在零重力上的变化,而且还在各种纬度上。研究发现,对地静止卫星的半径仅在±2 m范围内偏离其平均值42164.2 km,这主要是由于球谐系数J 22 引起的,这与卫星的赤道平坦化有关。地球。远离赤道的零重力表面偏离了地球同步卫星的理想半径,对于更高的纬度而言更是如此。前者表面的半径朝向两极向无穷大增加,而后者从赤道到两极减少约520 m。潮汐影响使这些半径在±2.3 km之内变化。

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