首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Nontidal oceanic contribution to length-of-day changes estimated from two ocean models during 1992–2001
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Nontidal oceanic contribution to length-of-day changes estimated from two ocean models during 1992–2001

机译:根据1992-2001年的两种海洋模式估算的非潮汐海洋对日变化的贡献

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Contributions of ocean bottom pressure and currents to changes in the length of day (LOD) during 1992–2001 are evaluated at seasonal timescales by using two different ocean general circulation model products developed at the Scripps Institution of Oceanography and the University of Maryland. The annual amplitudes for the two bottom pressure terms of oceanic angular momentum (OAM) differ by approximately a factor of 3, while their annual phases are similar. Comparing the gravity-derived nonatmosphere LOD changes with the two OAM bottom pressure terms at annual frequency, we find obvious discrepancies in phase. This result indicates that excitation of LOD changes by other sources, such as hydrology, is also important. The annual amplitudes and phases of the two OAM current terms compare well with those of the observed LOD minus gravity-derived LOD changes and axial atmosphere angular momentum wind term but only if wind effects between 10 and 0.3 hPa levels are not included in the latter. The two OAM series have similar seasonal amplitudes and phases, but they differ substantially when examined in different latitudinal bands. The annual amplitudes of two OAM-induced LOD changes are comparable with that of the nonatmosphere LOD changes, but the semiannual amplitudes are far smaller. Our study indicates that the oceanic effects on LOD should continue to be examined. In addition, the effects of zonal winds (10–0.3 hPa) on LOD are more significant than that of atmospheric surface pressures at semiannual frequency, while they play almost the same roles for annual term.
机译:通过使用斯克里普斯海洋学研究所和马里兰大学开发的两种不同的海洋总环流模型产品,在季节性尺度上评估了1992-2001年期间海底压力和洋流对日长变化的贡献。海洋角动量(OAM)的两个底部压力项的年振幅相差约3倍,而它们的年相相似。将重力引起的非大气LOD变化与两个OAM底部压力项在年频率上的变化进行比较,我们发现在相位上存在明显的差异。该结果表明,其他来源(如水文学)对LOD变化的激发也很重要。这两个OAM当前项的年振幅和相位与观察到的LOD减去重力衍生的LOD变化和轴向大气角动量风项时的相差很好,但前提是后者中不包括10至0​​.3 hPa水平的风影响。这两个OAM系列具有相似的季节性振幅和相位,但是在不同的纬度带中检查时,它们有很大的不同。两个OAM引起的LOD变化的年振幅与非大气LOD变化的年振幅相当,但半年振幅要小得多。我们的研究表明应继续检查海洋对LOD的影响。此外,在半年度,纬向风(10–0.3 hPa)对LOD的影响要比大气表面压力的影响大,而它们在年期内的作用几乎相同。

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