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首页> 外文期刊>Journal of geodynamics >Non-tidal oceanic contribution to polar wobble estimated from two oceanic assimilation data sets
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Non-tidal oceanic contribution to polar wobble estimated from two oceanic assimilation data sets

机译:根据两个海洋同化数据集估算的非潮汐对极地摆动的贡献

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Contributions of ocean bottom pressure and oceanic current to polar wobble are evaluated by using two oceanic data assimilation products. One product comes from Scripps Institution of Oceanography (ECCO), and the other is the Simple Ocean Data Assimilation (SODA) developed at University of Maryland. The results show that seasonal fluctuations in these two assimilated ocean angular momentum (OAM) time series agree better with each other along the Greenwich meridian than along the 90°E meridian. Furthermore, annual OAM change for ECCO is much closer to non-atmospheric residual, than that for SODA. However, annual OAM change for SODA along the Greenwich meridian compares better than that for ECCO to non-atmospheric-hydrologic residual, in which annual and semi-annual signals of land hydrologic angular momentum (LHAM) of a climate model are considered. At the meantime, annual LHAM signals along the 90°E meridian derived from the climate model and from the GRACE data are also compatible with each other. It is likely that ECCO overestimates the annual change along the 90°E meridian according to the angular momentum conservation law in the Earth system. Consequently, the oceanic role in polar wobble should be further examined.
机译:通过使用两个海洋数据同化产物来评估海底压力和洋流对极地摆动的贡献。一种产品来自斯克里普斯海洋学研究所(ECCO),另一种来自马里兰大学开发的简单海洋数据同化(SODA)。结果表明,这两个同化海洋角动量(OAM)时间序列的季节性波动沿格林威治子午线比沿90°E子午线彼此更好。此外,与SODA相比,ECCO的OAM年度变化更接近于非大气残留。但是,沿格林威治子午线的SODA的年度OAM变化比非ECCO与非大气水文残留要好得多,后者考虑了气候模型的陆地和水文角动量(LHAM)的年度和半年度信号。同时,来自气候模型和GRACE数据的沿90°E子午线的年度LHAM信号也彼此兼容。 ECCO可能根据地球系统中的角动量守恒定律高估了90°E子午线上的年度变化。因此,应进一步检查海洋在极地摆动中的作用。

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