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首页> 外文期刊>Bulletin of the Seismological Society of America >Receiver Functions of Seismic Waves in Layered Anisotropic Media: Application to the Estimate of Seismic Anisotropy
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Receiver Functions of Seismic Waves in Layered Anisotropic Media: Application to the Estimate of Seismic Anisotropy

机译:层状各向异性介质中地震波的接收函数:在地震各向异性估计中的应用

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摘要

We investigate the effect of seismic anisotropy on P-wave receiver functions, calculating synthetic seismograms for P-wave incidence on multilayered anisotropic structure with hexagonal symmetry. The main characteristics of the receiver functions affected by the anisotropy are summarized as (1) appearance of seismic energy on radial and transverse receiver functions, (2) systematic change of P-to-S (Ps) converted waveforms on receiver functions as ray back-azimuth increases, and (3) reversal of the Ps-phase polarity on the radial receiver function in a range of the back azimuth. Another important influence is shear-wave splitting of the Ps-converted waves and other later phases reverberated as S wave. By numerical experiments using synthetic receiver functions, we demonstrate that the waveform cross-correlation analysis is applicable to splitting Ps phases on receiver functions to estimate the seismic anisotropy of layer structure. Advantages to utilizing the Ps phases are (1) they appear more clearly on receiver functions than on seismograms and (2) they inform us about what place along the seismic ray path is anisotropic. Real analysis of shear-wave splitting is executed to the Moho-generated Ps phases that are identified on receiver functions at six seismic stations in the Chugoku district, southwest Japan. The time lags between the two arrivals of the split Ps phases are estimated at 0.2-0.7 sec, and the polarization directions of the fast arrival components are from north-south to northeast-southwest. This result is consistent with recent results of shear-wave splitting measurements and the trend of linear epicenter distributions of crustal earthquakes and active fault strikes in the Chugoku district.
机译:我们研究了地震各向异性对P波接收器功能的影响,计算了具有六角对称性的多层各向异性结构上P波入射的合成地震图。受各向异性影响的接收器函数的主要特征概括为:(1)径向和横向接收器函数上的地震能量的出现;(2)接收器函数上作为射线反射的P-to-S(Ps)转换波形的系统变化-方位角增大,并且(3)在后方位角的范围内径向接收器功能上的Ps相极性反转。另一个重要的影响是Ps转换波的剪切波分裂,以及其他回波为S波的后期相位。通过使用合成接收器函数的数值实验,我们证明了波形互相关分析适用于在接收器函数上分割Ps相,以估计层结构的地震各向异性。利用Ps相位的优点是:(1)它们在接收器功能上比在地震图中更清晰地出现;(2)它们告知我们沿地震射线路径的哪个方向是各向异性的。对在日本西南部中国地方的六个地震台的接收器功能上确定的Moho生成的Ps相进行了切波分裂的真实分析。 Ps分裂相的两次到达之间的时间间隔估计为0.2-0.7秒,快速到达分量的极化方向是从南北向东北-西南。这一结果与最近的剪切波分裂测量结果以及中国地方地区地壳地震和活动断层走向的线性震中分布趋势一致。

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