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Evidence for infragravity wave-tide resonance in deep oceans

机译:深海次重力潮汐共振的证据

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Ocean tides are the oscillatory motions of seawater forced by the gravitational attraction of the Moon and Sun with periods of a half to a day and wavelengths of the semi-Pacific to Pacific scale. Ocean infragravity (IG) waves are sea-surface gravity waves with periods of several minutes and wavelengths of several dozen kilometres. Here we report the first evidence of the resonance between these two ubiquitous phenomena, mutually very different in period and wavelength, in deep oceans. The evidence comes from long-term, large-scale observations with arrays of broadband ocean-bottom seismometers located at depths of more than 4,000 m in the Pacific Ocean. This observational evidence is substantiated by a theoretical argument that IG waves and the tide can resonantly couple and that such coupling occurs over unexpectedly wide areas of the Pacific Ocean. Through this resonant coupling, some of ocean tidal energy is transferred in deep oceans to IG wave energy.. ? 2010 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:海洋潮汐是由月球和太阳的引力吸引的海水的振荡运动,周期为半天到一天,波长为半太平洋到太平洋范围。海洋次重力(IG)波是海面重力波,周期为数分钟,波长为几十公里。在这里,我们报告了这两种普遍现象之间的共振的第一个证据,这两种现象在深海中的周期和波长上互不相同。证据来自对太平洋中超过4000 m深度的一系列宽带海底地震仪的长期大规模观测。这一观测证据被理论上的论据所证实,即IG波和潮汐可以共振耦合,并且这种耦合发生在太平洋出乎意料的广阔区域。通过这种共振耦合,一些海洋潮汐能在深海中被转换为IG波能。 2010 Nature Publishing Group,Macmillan Publishers Limited的子公司。版权所有。

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