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Improving Seismic Event Location: An Alternative to Three-dimensional Structural Models

机译:改善地震事件的位置:三维结构模型的替代

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摘要

— We devise and apply a method to account for the effect of the aspherical structure of the Earth in locating earthquakes. This technique relies upon the ability to detect the average structural signal present in the residuals between source and receiver and correct for this signal during location, using a phenomenological description that we call Empirical Heterogeneity Corrections (EHC). EHC are employed in the relocation of a large set of well-constrained teleseismic earthquakes selected among the events reported by the Bulletins of the International Seismological Centre 1964–1995. The rms length of EHC relocation vectors for these events is about 10 km. The method is also tested against a selected set of ground-truth events, both earthquakes and explosions, whose locations are independently known by nonseismic means. The rms length of the mislocation vectors for the test events, compared to their original mislocation in the reference 1-D model SP6, is reduced in the EHC relocation by 17% for explosions and 12% for earthquakes. Our technique provides a successful alternative to the use of 3-D structural models, approximately reaching the same value of effectiveness in improving event location.
机译:—我们设计并应用了一种方法来说明地球非球面结构对地震定位的影响。该技术依赖于以下能力:使用现象学描述(我们称为经验异质性校正(EHC))来检测源和接收器之间的残差中存在的平均结构信号并在定位期间对此信号进行校正。 EHC被用于大量受约束的远震地震的重新定位,这些地震是在1964-1995年国际地震中心公告所报告的事件中选择的。这些事件的EHC重定位向量的均方根长度约为10 km。还针对一组选定的地面真实事件(包括地震和爆炸)测试了该方法,这些事件的位置可以通过非地震手段独立得知。与参考1-D模型SP6中的原始错误定位相比,测试事件的错误定位矢量的rms长度在EHC重定位中针对爆炸减少了17%,对于地震减少了12%。我们的技术为使用3-D结构模型提供了一种成功的替代方法,可以大致达到提高事件定位的有效性的相同值。

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