Lunar tidal acceleration obtained from satellite-derived ocean tide parameters
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机译:从卫星海潮参数获得的月潮加速度
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摘要
One hundred sets of mean elements of GEOS-3 computed at 2-day intervals yielded observation equations for the M sub 2 ocean tide from the long periodic variations of the inclination and node of the orbit. The 2nd degree Love number was given the value k sub 2 = 0.30 and the solid tide phase angle was taken to be zero. Combining obtained equations with results for the satellite 1967-92A gives the M sub 2 ocean tide parameter values. Under the same assumption of zero solid tide phase lag, the lunar tidal acceleration was found mostly due to the C sub 22 term in the expansion of the M sub 2 tide with additional small contributions from the 0 sub 1 and N sub 2 tides. Using Lambeck's (1975) estimates for the latter, the obtained acceleration in lunar longitudal in excellent agreement with the most recent determinations from ancient and modern astronomical data.
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机译:根据轨道倾角和节点的长期周期性变化,以2天为间隔计算了一百套GEOS-3的平均元素,得出了M sub 2海潮的观测方程。将2度洛夫数的值设为k sub 2 = 0.30,并将固体潮汐相位角设为零。将获得的方程与卫星1967-92A的结果相结合,得出M sub 2的海潮参数值。在零固体潮汐相位滞后的相同假设下,发现月潮加速度主要归因于M sub 2潮汐扩张中的C sub 22项,而0 sub 1和N sub 2潮汐的贡献较小。使用Lambeck(1975)的估计,月球纵向的加速度与古代和现代天文数据的最新测定结果非常吻合。
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