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Noise generation in the solid Earth, oceans and atmosphere, from nonlinear interacting surface gravity waves in finite depth ArchiMer
Ardhuin, Fabrice; Herbers, T. H. C..
Oceanic pressure measurements, even in very deep water, and atmospheric pressure or seismic records, from anywhere on Earth, contain noise with dominant periods between 3 and 10 s, which is believed to be excited by ocean surface gravity waves. Most of this noise is explained by a nonlinear wave-wave interaction mechanism, and takes the form of surface gravity waves, acoustic or seismic waves. Previous theoretical work on seismic noise focused on surface (Rayleigh) waves, and did not consider finite-depth effects on the generating wave kinematics. These finite-depth effects are introduced here, which requires the consideration of the direct wave-induced pressure at the ocean bottom, a contribution previously overlooked in the context of seismic noise. That...
Tipo: Text Palavras-chave: Acoustics; Geophysical and geological flows; Surface gravity waves.
Ano: 2013 URL: http://archimer.ifremer.fr/doc/00125/23580/21479.pdf
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