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首页> 外文期刊>Seismic instruments >Towards Global Seismic Monitoring of Underground Nuclear Explosions Using Waveform Cross Correlation. Part Ⅰ: Grand Master Events
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Towards Global Seismic Monitoring of Underground Nuclear Explosions Using Waveform Cross Correlation. Part Ⅰ: Grand Master Events

机译:利用波形互相关走向地下核爆炸的全球地震监测。第一部分:大师盛事

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We propose to use waveform cross correlation techniques for seismic monitoring of the Comprehensive Nuclear-Test-Ban Treaty (CTBT) by proving the ability to build the Global Grid (GG) of master events using high-quality waveform templates at stations of the International Monitoring System. In seismi-cally active regions, the choice of the highest quality and most representative signals from earthquakes as templates for master events is straightforward and one can reduce the current amplitude detection threshold at the International Data Centre (IDC) by a factor of 2 to 3. This gain practically doubles the number of built events, and thus, is crucial for seismic monitoring under the CTBT. However, the coverage by real masters is confined to areas with natural seismicity. Here, we investigate the possibility to populate the GG with real and synthetic master events as a two part study. In Part Ⅰ, we estimate the effectiveness of cross correlation based on a regular grid filled with grand-master events with replicated high-quality waveform templates.In Part Ⅱ, we develop and estimate efficiency of synthetic waveform templates for aseismic zones. Both approaches are quantitatively tested using the aftershock sequence of the April 11, 2012 Sumatera earthquake. The cross correlation bulletin previously built using sixteen real master events is a natural benchmark to evaluate the performance of the replicated masters and synthetic waveforms. In Part Ⅰ, we prove that the replicated grand masters demonstrate the performance at the level of real masters. The Primary IMS Seismic Network includes many array stations, which provide a higher resolution monitoring based on cross correlation.
机译:我们建议使用波形互相关技术对《全面禁止核试验条约》(CTBT)进行地震监测,方法是证明使用国际监测站的高质量波形模板来构建主事件的全球网格(GG)的能力系统。在地震活跃地区,选择地震的最高质量和最具代表性的信号作为主事件的模板非常简单,并且可以将国际数据中心(IDC)的当前幅度检测阈值降低2-3倍该增益实际上使构建事件的数量增加了一倍,因此,对于在CTBT下进行地震监测至关重要。但是,真正的大师所涵盖的范围仅限于具有自然地震活动性的区域。在这里,我们将研究分为两个部分,研究用真实的和合成的主事件填充GG的可能性。在第一部分中,我们使用填充有复制事件的高质量波形模板的盛大主事件的规则网格来估计互相关的有效性。在第二部分中,我们开发并估计了地震带合成波形模板的效率。两种方法均使用2012年4月11日苏门答腊地震的余震序列进行了定量测试。以前使用16个实际主事件构建的互相关公告是评估复制的主波形和合成波形的性能的自然基准。在第一部分中,我们证明了复制的大师级作品在真实大师级作品中表现出色。主IMS地震网络包括许多阵列站,这些阵列站基于互相关性提供了更高分辨率的监视。

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