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首页> 外文期刊>Bulletin of the Seismological Society of America >Improving epicentral and magnitude estimation of earthquakes from T phases by considering the excitation function
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Improving epicentral and magnitude estimation of earthquakes from T phases by considering the excitation function

机译:通过考虑激励函数来改进T相地震的震中和震级估计

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A standard technique for locating events with T phases is to pick the peak energy of T phases as the arrival time, then proceed as if it was an unscattered phase originating at the epicenter. The peak energy arrival time, however, can shift to different parts of the wave train due to incoherent scattering. We show that a 50% reduction in variance relative to picks of peak arrival times can be achieved by fitting an assumed functional shape to the log of the entire envelope of the T phase. We test the stability of this approach by comparing relative event locations based on this method with those determined by cross-correlating waveforms of Rayleigh and Love surface waves recorded teleseismically using a swarm of earthquakes at the northern end of the Easter microplate as an example. Relative event locations show that there is no systematic bias in T-phase locations. The T-phase location and detection can be extended to much smaller events than are detectable by surface waves. We estimate T-phase maximum amplitudes of about 50 events within the swarm from the amplitude of the fitted functions rather than directly from the seismograms. Twenty-four of these events are large enough to estimate their magnitudes by surface-wave analysis. The empirical analysis shows the log of T-phase maximum amplitude and surface-wave magnitude (M-S) exhibit a relatively uniform linear relationship with much less scatter than in previously published studies of T-phase amplitude versus magnitude. The reduction in scatter is due to both the stability of the functional estimate of amplitude and the use of a swarm of earthquakes with similar depth, mechanism, and source-receiver geometry. The observed T-phase coda for shallow earthquakes can be synthesized using a simple model of multiple-reverberation seafloor scattering. The results show that scattering of energy at a rough seafloor from multiple reverberations in the water column is significant in T-phase generation even where the water depths are relatively uniform. [References: 38]
机译:定位具有T相事件的标准技术是选择T相的峰值能量作为到达时间,然后进行处理,就好像它是始于震中的未散射相一样。但是,由于非相干散射,峰值能量到达时间可能会移动到波列的不同部分。我们表明,通过将假定的函数形状拟合到T相整个包络的对数,可以实现相对于峰到达时间的选择,降低50%的方差。我们通过将基于此方法的相对事件位置与通过以复活节微孔板北端的地震群远震记录的瑞利和洛夫表面波的互相关波形确定的事件位置进行比较,来测试该方法的稳定性。相对事件位置显示T相位置没有系统性偏差。 T相位的定位和检测可以扩展到比表面波检测到的事件小得多的事件。我们根据拟合函数的幅度而不是直接从地震图估算群体中大约50个事件的T相最大幅度。这些事件中有24个足够大,可以通过表面波分析来估计其大小。经验分析表明,与以前发表的有关T相幅值与幅值的研究相比,T相最大幅值和对面波幅值(M-S)的对数呈现出相对均匀的线性关系,且散布少得多。散射的减少是由于振幅的函数估计的稳定性以及使用具有相似深度,机制和震源-接收器几何形状的地震群所致。可以使用简单的多混响海底散射模型合成观测到的浅层地震T相尾声。结果表明,即使在水深相对均匀的情况下,水柱多次混响在粗糙海底上的能量散射在T相生成中也很重要。 [参考:38]

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