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Locating earthquakes with surface waves and centroid moment tensor estimation

机译:利用表面波和质心矩张量估计来定位地震

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摘要

Traditionally, P wave arrival times have been used to locate regional earthquakes. In contrast, the travel times of surface waves dependent on source excitation and the source parameters and depth must be determined independently. Thus surface wave path delays need to be known before such data can be used for location. These delays can be estimated from previous earthquakes using the cut-and-paste technique, Ambient Seismic Noise tomography, and from 3D models. Taking the Chino Hills event as an example, we show consistency of path corrections for (>10 s) Love and Rayleigh waves to within about 1 s obtained from these methods. We then use these empirically derived delay maps to determine centroid locations of 138 Southern California moderate-sized (3.5 > M_w > 5.7) earthquakes using surface waves alone. It appears that these methods are capable of locating the main zone of rupture within a few (~3) km accuracy relative to Southern California Seismic Network locations with 5 stations that are well distributed in azimuth. We also address the timing accuracy required to resolve non-double-couple source parameters which trades-off with location with less than a km error required for a 10% Compensated Linear Vector Dipole resolution.
机译:传统上,P波到达时间已用于定位区域地震。相反,取决于源激发以及源参数和深度的表面波传播时间必须独立确定。因此,在将此类数据用于定位之前,需要知道表面波路径的延迟。可以使用剪切粘贴技术,周围地震噪声层析成像和3D模型从以前的地震中估计这些延迟。以奇诺岗山事件为例,我们显示了通过这些方法获得的(> 10 s)Love和Rayleigh波的路径校正在大约1 s内的一致性。然后,我们仅凭面波就可以利用这些经验得出的延迟图来确定138个南加州中度(3.5> M_w> 5.7)地震的质心位置。相对于南加州地震台网具有5个方位角分布良好的台站,这些方法似乎能够将主要破裂带定位在几(〜3)km的精度内。我们还解决了解决非双耦合源参数所需的定时精度问题,该参数需要权衡取舍,且误差要小于10%补偿线性矢量偶极子分辨率所需的km误差。

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