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EVIDENCE FOR EXCITATION OF POLAR MOTION BY FORTNIGHTLY OCEAN TIDES

机译:猛烈的洋潮激发极化运动的证据

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The second-degree zonal tide raising potential, which is responsible for tidal changes in the Earth's rotation rate and length-of-day, is symmetric about the polar axis and hence can excite the Earth's polar motion only through its action upon nonaxisymmetric features of the Earth such as the oceans. Ocean tidal excitation of polar motion in the diurnal and semidiurnal tidal bands has been previously detected and examined. Here, the detection of ocean tidal excitation of polar motion in the long period tidal band, specifically at the Mf' (13.63-day) and Mf (13.66-day) tidal frequencies, is reported. Spectra of the SPACE94 polar motion excitation series exhibit peaks at the prograde and retrograde fortnightly tidal periods. After removing effects of atmospheric wind and pressure changes, an empirical model for the effect of the fortnightly ocean tides upon polar motion excitation is obtained by least-squares fitting periodic terms at the Mf and Mf' tidal frequencies to the residual polar motion excitation series. The resulting empirical model is then compared with the predictions of two hydrodynamic ocean tide models. [References: 19]
机译:造成地球自转率和日变化的潮汐变化的二级纬向带潮势是关于极轴对称的,因此只能通过作用于地球非轴对称特征来激发地球的极运动。地球如海洋。先前已检测到并检查了昼夜和半昼间潮汐带极运动的海洋潮汐激发。在这里,报告了在长潮带,特别是在Mf'(13.63天)和Mf(13.66天)潮汐频率上海洋运动的极潮激发潮汐的检测。 SPACE94极运动激发系列的光谱在前进和后退两周的潮汐期均出现峰值。在消除了大气风和压力变化的影响之后,通过最小二乘将Mf和Mf'潮汐频率上的周期项拟合到残留的极运动激发序列,获得了每两周海潮对极运动激发的影响的经验模型。然后将所得的经验模型与两个流体动力学海潮模型的预测结果进行比较。 [参考:19]

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