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首页> 外文期刊>TAO: Terrastrial, atmospheric, and oceanic sciences >Observations of earthquake-generated T-waves in the South China Sea: Possible applications for regional seismic monitoring
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Observations of earthquake-generated T-waves in the South China Sea: Possible applications for regional seismic monitoring

机译:南海地震产生的T波观测:区域地震监测的可能应用

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We present a detailed study of T-waves originating from earthquakes in the South China Sea region, near the Indochina Peninsula and Luzon islands which were recorded by a broadband seismic station at Nansha Island. Most of these T-waves appear to have been the source originating from earthquakes with epicentral distances greater than 600 km from this station. The T-waves in this region were identified via their apparent stable measured velocities of about 1.45 km s-1, and represent the first reported T-waves and the first T-waves observed from an island station in the South China Sea. However, during the period of analysis (November 2004 to December 2005) additional earthquakes also occurred beyond the South China Sea region, but in these instances, any associated T-waves were not picked up by the station at Nansha Island. An analysis of Twave travel times reveals the possible locations of the P-wave to T-wave transitions at the ocean to crust interface were presumably situated near the earthquake source side. Our results indicate that the Sound Fixing and Ranging (SOFAR) channel is well developed in the South China Sea region. Ultimately, developing a solid understanding of the effective transmission of T-waves through the ocean may provide new opportunities for detecting and locating small earthquakes which would be useful for both seismic monitoring and in helping to predict and reduce the damaging effects of earthquakes and tsunamis in the South China Sea region.
机译:我们对来自南中国海地区,印度支那半岛和吕宋岛附近的地震产生的T波进行了详细研究,这些地震是由南沙岛的宽带地震台站记录的。这些T波中的大多数似乎是震源,震中距该站的震中距离大于600 km。该区域的T波是通过其大约1.45 km s-1的表观稳定测得的速度确定的,代表了首次报告的T波和从南海某岛台观测到的第一批T波。但是,在分析期间(2004年11月至2005年12月),在南海地区以外还发生了另外的地震,但是在这些情况下,南沙岛的台站没有拾取到任何相关的T波。对T波传播时间的分析表明,从海浪到地壳界面的P波向T波过渡的可能位置可能位于地震源侧附近。我们的结果表明,声音固定和测距(SOFAR)通道在南中国海地区非常发达。最终,对T波在海洋中的有效传输有了深入的了解,可能会为检测和定位小地震提供新的机会,这对于地震监测以及有助于预测和减少地震和海啸的破坏性影响都是有用的。南中国海地区。

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