首页> 外文期刊>Bulletin of the Seismological Society of America >Focal Depth Determination for Moderate and Small Earthquakes by Modeling Regional Depth Phases sPg, sPmP, and sPn
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Focal Depth Determination for Moderate and Small Earthquakes by Modeling Regional Depth Phases sPg, sPmP, and sPn

机译:通过对区域深度阶段sPg,sPmP和sPn建模,确定中小地震的震源深度

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摘要

There are three usable regional depth phases, sPg, sPmP, and sPn, and their corresponding reference phases, Pg, PmP, and Pn. The differential time between each depth phase and its reference phase can be used to estimate earthquake focal depth. We have developed a method to determine focal depth for moderate and small earthquakes by using a regional depth-phase modeling (RDPM) method. We used a default focal mechanism to generate the differential times for all earthquakes. To estimate the reliability of the modeled focal depths, we compared our solutions with those obtained by other methods and found the consistency is good. Because the focal depths estimated by RDPM are model dependent, we tested the extent of the dependency and found that a 10% error in the crustal model may generate a 10%–15% error in the modeled depth. The absolute error is determined by the error in the crustal model and the focal depth itself. We found that earthquake location errors have only a small effect on the modeled focal depths. By analyzing synthetic and observed waveforms, we found a distance window within which sPmP and PmP are well developed, and, within the window, the P portion of the waveform is relatively simple and sPmP and PmP are easy to identify.We also demonstrated that the assumptions of sPmP and PmP are correct, that regional depth phases are not developed or not discernible in some regions, and that regional depth phases have special features that can be used to identify those phases.
机译:共有三个可用的区域深度阶段sPg,sPmP和sPn,以及它们相应的参考阶段Pg,PmP和Pn。每个深度阶段与其参考阶段之间的时差可用于估计地震震源深度。我们已经开发了一种通过使用区域深度阶段建模(RDPM)方法确定中小地震震源深度的方法。我们使用默认的震源机制来生成所有地震的时差。为了估计建模焦深的可靠性,我们将我们的解决方案与通过其他方法获得的解决方案进行了比较,发现一致性很好。由于RDPM估计的震源深度与模型有关,因此我们测试了依赖性的程度,发现地壳模型中10%的误差可能会在建模深度中产生10%至15%的误差。绝对误差由地壳模型中的误差和焦点深度本身确定。我们发现,地震位置误差对模拟震源深度的影响很小。通过分析合成波形和观察到的波形,我们发现了一个距离窗口,其中sPmP和PmP很好地发展了,并且在该窗口内,波形的P部分相对简单,并且sPmP和PmP易于识别。 sPmP和PmP的假设是正确的,区域深度阶段在某些区域中没有发展或无法辨别,并且区域深度阶段具有可用于识别这些阶段的特殊特征。

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