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How deep ocean-land coupling controls the generation of secondary microseism Love waves

机译:深度海洋陆地耦合如何控制二次微源激发爱情的产生

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摘要

Wind driven ocean wave-wave interactions produce continuous Earth vibrations at the seafloor called secondary microseisms. While the origin of associated Rayleigh waves is well understood, there is currently no quantified explanation for the existence of Love waves in the most energetic region of the microseism spectrum (3-10 s). Here, using terrestrial seismic arrays and 3D synthetic acoustic-elastic simulations combined with ocean wave hindcast data, we demonstrate that, observed from land, our general understanding of Rayleigh and Love wave microseism sources is significantly impacted by 3D propagation path effects. We show that while Rayleigh to Love wave conversions occur along the microseism path, Love waves predominantly originate from steep subsurface geological interfaces and bathymetry, directly below the ocean source that couples to the solid Earth. We conclude that, in contrast to Rayleigh waves, microseism Love waves observed on land do not directly relate to the ocean wave climate but are significantly modulated by continental margin morphologies, with a first order effect from sedimentary basins. Hence, they yield rich spatio-temporal information about ocean-land coupling in deep water.
机译:风驱动海波波相互作用在叫二次微痉挛的海底产生连续的地球振动。虽然相关的瑞利波的起源得到了很好的理解,但目前没有用于在微痉挛光谱(3-10s)的最能充电区域中的爱波的存在的量化解释。在这里,使用地震阵列和3D合成声学 - 弹性模拟与海浪Hindcast数据相结合,我们证明了从土地观察到的,我们对瑞利和爱情波微痉挛源的一般理解受到3D传播路径效应的显着影响。我们认为,虽然沿着微动路径发生瑞利到爱情波的转化,但爱情波主要来自陡峭的地下地质界面和沐浴,直接源于耦合到固体地球的海洋源。我们得出结论,与瑞利波相比,在陆地上观察到的微痉挛爱浪与海浪气候没有直接涉及海浪气候,而是由大陆边缘形态显着调节,沉积盆地的一级效应。因此,它们会产生关于深水中的海上耦合的丰富的时空信息。

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  • 来源
    《Oceanographic Literature Review》 |2021年第6期|1189-1189|共1页
  • 作者

    F. Le Pape; D. Craig; C.J. Bean;

  • 作者单位

    Geophysics Section Dublin Institute for Advanced Studies Dublin 2 Ireland;

    Geophysics Section Dublin Institute for Advanced Studies Dublin 2 Ireland;

    Geophysics Section Dublin Institute for Advanced Studies Dublin 2 Ireland;

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  • 正文语种 eng
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