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Impact of self-attraction and loading on Earth rotation

机译:自我吸引和负荷对地球自转的影响

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The impact of self-attraction and loading (SAL) on Earth rotation has not been previously considered except at annual timescales. We estimate Earth rotation excitations using models of atmospheric, oceanic, and land hydrology surface mass variations and investigate the importance of including SAL over monthly to interannual timescales. We assess SAL effects in comparison with simple mass balance effects where net mass exchanged with the atmosphere and land is distributed uniformly over the global ocean. For oceanic polar motion excitations, SAL impacts are important even though mass balance impact is minor except at the annual period. This is true of global (atmosphere+land+ocean) polar motion excitations as well, although the SAL impacts are smaller. When estimating length-of-day excitations, mass balance effects have a dominant impact, particularly for oceanic excitation. Although SAL can have a significant impact on estimated Earth rotation excitations, its consideration generally did not improve comparisons with geodetic observations. This result may change in the future as surface mass models and Earth rotation observations improve.
机译:以前没有考虑过自吸和负重(SAL)对地球自转的影响,但每年的时间尺度除外。我们使用大气,海洋和陆地水文学表面质量变化模型来估计地球自转激发,并研究在月度到年际尺度上包括SAL的重要性。与简单的质量平衡效应(与大气和陆地交换的净质量均匀分布在全球海洋中)相比,我们评估了SAL效应。对于海洋极地运动激发,尽管质量平衡影响很小,但除年度期间外,SAL影响很重要。尽管SAL的影响较小,但全球(大气+陆地+海洋)极运动激发也是如此。在估算一天中的激发时间时,质量平衡效应具有主要影响,尤其是对于海洋激发而言。尽管SAL可能会对估计的地球自转激发产生重大影响,但是考虑到它通常不能改善与大地观测的比较。随着表面质量模型和地球自转观测的改善,该结果将来可能会改变。

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