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Epicentral location based on Rayleigh wave Empirical Green's Functions from ambient seismic noise

机译:基于环境地震噪声的瑞利波经验格林函数的震中位置

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摘要

A new method to locate the epicentre of regional seismic events is developed with strengths and limitations complementary to existing location methods. This new technique is based on applying empirical Green's functions (EGFs) for Rayleigh waves between 7 and 15 s period that are determined by cross-correlation of ambient noise time-series recorded at pairs of seismic receivers. The important advantage of this method, in comparison with standard procedures based on use of body wave traveltimes, is that it does not rely on an earth model. Rather it is based on interpolating the EGFs to arbitrary hypothetical event locations. The method is tested by locating well known 'Ground Truth' crustal events in the western United States (magnitude 4 earthquakes in California, magnitude 3 earthquakes in Utah, and a mine collapse) as well as locating seismic stations as virtual events. In these applications, location errors average less than 1 km, but are expected to vary with event mechanism and depth. Numerical simulations show that the method optimizes when source depth is less than 1 km or more than 5 km, and when the source mechanism is nearly purely strike-slip, thrust or normal.
机译:开发了一种定位区域地震事件震中的新方法,其优势和局限性是对现有定位方法的补充。这项新技术基于将格林经验函数(EGF)用于7至15 s周期的瑞利波,该函数由在地震接收器对上记录的环境噪声时间序列的互相关确定。与基于体波传播时间的标准程序相比,此方法的重要优点是它不依赖于地球模型。而是基于将EGF插值到任意假设的事件位置。通过定位美国西部著名的“地面真相”地壳事件(加利福尼亚的4级地震,犹他州的3级地震和矿山倒塌)以及将地震台站定位为虚拟事件来测试该方法。在这些应用中,位置误差平均小于1 km,但预计会随事件机制和深度而变化。数值模拟表明,该方法在震源深度小于1 km或大于5 km以及震源机制几乎完全是走滑,推力或法线时进行了优化。

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