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Estimate of Rayleigh-to-Love wave ratio in the secondary microseism by colocated ring laser and seismograph

机译:并置环形激光和地震仪估算次生微震中的瑞利波与爱波比

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摘要

Using a colocated ring laser and an STS-2 seismograph, we estimate the ratio of Rayleigh-to-Love waves in the secondary microseism at Wettzell, Germany, for frequencies between 0.13 and 0.30Hz. Rayleigh wave surface acceleration was derived from the vertical component of STS-2, and Love wave surface acceleration was derived from the ring laser. Surface wave amplitudes are comparable; near the spectral peak about 0.22Hz, Rayleigh wave amplitudes are about 20% higher than Love wave amplitudes, but outside this range, Love wave amplitudes become higher. In terms of the kinetic energy, Rayleigh wave energy is about 20-35% smaller on average than Love wave energy. The observed secondary microseism at Wettzell thus consists of comparable Rayleigh and Love waves but contributions from Love waves are larger. This is surprising as the only known excitation mechanism for the secondary microseism, described by Longuet-Higgins (1950), is equivalent to a vertical force and should mostly excite Rayleigh waves.
机译:使用并置的环形激光器和STS-2地震仪,我们估算了德国Wettzell的次微震中瑞利波与洛夫波的比率,频率介于0.13和0.30Hz之间。瑞利波表面加速度来自STS-2的垂直分量,洛夫波表面加速度来自环形激光器。表面波振幅是可比较的;在大约0.22Hz的频谱峰值附近,瑞利波振幅比Love波振幅高约20%,但是在此范围之外,Love波振幅变高。在动能方面,瑞利波能平均比洛夫波能小20-35%。因此,在Wettzell观察到的次级微地震由可比的瑞利波和洛夫波组成,但洛夫波的贡献更大。这是令人惊讶的,因为Longuet-Higgins(1950)描述的唯一已知的次生微震激发机制等效于垂直力,并且应主要激发瑞利波。

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