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首页> 外文期刊>Physics of the Earth and Planetary Interiors: A Journal Devoted to Obsevational and Experimerntal Studies of the Chemistry and Physics of Planetary Interiors and Their Theoretical Interpretation >The detection and location of low magnitude earthquakes in northern Norway using multi-channel waveform correlation at regional distances
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The detection and location of low magnitude earthquakes in northern Norway using multi-channel waveform correlation at regional distances

机译:使用区域距离上的多通道波形相关性检测和定位挪威北部低震级地震

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摘要

A fortuitous sequence of closely spaced earthquakes in the Rana region of northern Norway, during 2005, has provided an ideal natural laboratory for investigating event detectability using waveform correlation over networks and arrays at regional distances. A small number of events between magnitude 2.0 and 3.5 were recorded with a high SNR by the Fennoscandian IMS seismic arrays at distances over 600 km and three of these events, including the largest on 24 June, displayed remarkable waveform similarity even at relatively high frequencies. In an effort to detect occurrences of smaller earthquakes in the immediate geographical vicinity of the 24 June event, a multi-channel correlation detector for the NORSAR array was run for the whole calender year 2005 using the signal from the master event as a template. A total of 32 detections were made and all but 2 of these coincided with independent correlation detections using the other Nordic IMS array stations; very few correspond to signals detectable using traditional energy detectors. Permanent and temporary stations of the Norwegian National Seismic Network (NNSN) at far closer epicentral distances have confirmed that all but one of the correlation detections at NORSAR in fact correspond to real events. The closest stations at distances of approximately 10 km can confirm that the smallest of these events have magnitudes down to 0.5 which represents a detection threshold reduction of over 1.5 for the large-aperture NORSAR array and over 1.0 for the almost equidistant regional ARCES array. The incompleteness of the local network recordings precludes a comprehensive double-difference location for the full set of events. However, stable double-difference relative locations can be obtained for eight of the events using only the Lg phase recorded at the array stations. All events appear to be separated by less than 0.5 km. Clear peaks were observed in the NORSAR correlation coefficient traces during the coda of some of the larger events; the local stations confirm that these are in fact aftershocks exhibiting very similar waveforms to the main events. Many of the more marginal correlation detections are not made when the calculations are repeated using shorter signal segments, fewer sensors or more distant stations. We demonstrate in addition how these almost repeating seismic sources have been exploited to detect and measure timing anomalies at individual sites within the arrays and network. (c) 2006 Elsevier B.V. All rights reserved.
机译:2005年,挪威北部拉纳地区发生了一系列偶然的近距离地震,这为使用区域距离网络和阵列上的波形相关性研究事件可探测性提供了理想的自然实验室。 Fennoscandian IMS地震阵列在600 km以上的距离上以高SNR记录了数量级为2.0至3.5的事件,其中三个事件,包括6月24日最大的事件,即使在相对较高的频率下也显示出显着的波形相似性。为了检测6月24日地震临近地区较小地震的发生,在2005年整个日历年中,使用主事件的信号作为模板,运行了NORSAR阵列的多通道相关检测器。总共进行了32次检测,除2次外,其余所有检测均与使用其他Nordic IMS阵列站进行的独立相关检测相吻合。很少有信号对应于使用传统能量检测器可检测到的信号。挪威国家地震台网(NNSN)的永久和临时台站的震中距离更近,这证实了NORSAR的相关探测中只有一个相关探测实际上与真实事件相对应。距离大约10 km的最近站可以确认,这些事件中的最小事件的幅度降低到0.5,这代表大孔径NORSAR阵列的检测阈值降低了1.5以上,而近等距离区域ARCES阵列的检测阈值降低了1.0以上。本地网络记录的不完整排除了整个事件的全面双差位置。但是,仅使用在阵列站记录的Lg相位,就可以为八个事件获得稳定的双差相对位置。所有事件似乎相距不到0.5公里。在一些较大事件的尾声期间,在NORSAR相关系数迹线中观察到清晰的峰。当地台站确认这些实际上是余震,显示出与主要事件非常相似的波形。当使用较短的信号段,较少的传感器或较远的站点重复进行计算时,将不会进行许多更多的边缘相关检测。此外,我们还演示了如何利用这些几乎重复的地震源来检测和测量阵列和网络中各个站点的时序异常。 (c)2006 Elsevier B.V.保留所有权利。

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