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首页> 外文期刊>Bulletin of the Seismological Society of America >Robust and reliable epicenter determinations: Envelope processing of local network data
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Robust and reliable epicenter determinations: Envelope processing of local network data

机译:可靠可靠的震中确定:本地网络数据的包络处理

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Local event recordings are complex in the sense that relevant P and S phases vary in an unpredictable manner even between closely spaced stations; thus, manual analysis of such records is still commonplace, Our approach to solving this long-standing problem of observational seismology is to bandpass filter (3 to 6 Hz) to ensure good signal-to-noise ratio SNR and then form envelopes to ensure simple signals across a seismograph network, The physical basis is that PS and Lg are crustal wave-guide phases reflecting P-and S-energy propagation, Extensive tests on envelope analysis of local records from different areas found that arrival times of the maxima of Pg and Lg envelopes increase very consistently with distance even in different tectonic regimes, typical velocities being 6.1 and 3.5 km/sec, respectively, These arrival-time parameters are easy to extract in a semi-automatic manner and are highly suitable for local epicenter determinations. Extensive tests on locating mining explosions were conducted, and on average, the "envelope" location errors relative to "true" locations were similar to those in bulletins that are based on conventional phase pickings, Occasionally, the Pg/Pn envelope may be very weak but can be replaced by the easily pickable (non-envelope) Pn phase, Additional advantages with envelope locations are transportability (not overly sensitive to details of crustal structure), and that envelope amplitudes can be directly converted to ground motion and magnitudes, For modern stations, envelopes can be formed in situ with low sampling rates of 1 to 2. Hz, thus greatly reducing transmission costs. [References: 23]
机译:本地事件记录很复杂,因为即使在间隔很近的电台之间,相关的P和S阶段也会以不可预测的方式变化。因此,手动分析此类记录仍然很普遍。我们解决这一长期存在的观测地震问题的方法是带通滤波器(3至6 Hz)以确保良好的信噪比SNR,然后形成包络以确保简单物理基础是PS和Lg是反映P和S能量传播的地壳波导相。对来自不同地区的本地记录的包络分析的广泛测试发现,Pg和Sg最大值的到达时间Lg包络线即使在不同的构造条件下也随距离而非常一致地增加,典型速度分别为6.1和3.5 km / sec。这些到达时间参数易于以半自动方式提取,非常适合于本地震中确定。进行了关于爆炸定位的广泛测试,平均而言,相对于“真实”位置的“包络”位置误差与基于常规相拾取的公告中的相似,有时,Pg / Pn包络可能非常弱但可以用易于拾取(非包络)的Pn相代替。包络位置的其他优点是可运输性(对地壳结构的细节不太敏感),并且包络振幅可以直接转换为地面运动和幅度。在站点上,可以以1-2 Hz的低采样率就地形成包络,从而大大降低了传输成本。 [参考:23]

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