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首页> 外文期刊>Geophysical Research Letters >Earthquake source parameters from GPS-measured static displacements with potential for real-time application
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Earthquake source parameters from GPS-measured static displacements with potential for real-time application

机译:GPS测量的静态位移的震源参数具有实时应用的潜力

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摘要

We describe a method for determining an optimal centroid-moment tensor solution of an earthquake from a set of static displacements measured using a network of Global Positioning System receivers. Using static displacements observed after the 4 April 2010, M_W 7.2 El Mayor-Cucapah, Mexico, earthquake, we perform an iterative inversion to obtain the source mechanism and location, which minimize the least-squares difference between data and synthetics. The efficiency of our algorithm for forward modeling static displacements in a layered elastic medium allows the inversion to be performed in real-time on a single processor without the need for precomputed libraries of excitation kernels; we present simulated real-time results for the El Mayor- Cucapah earthquake. The only a priori information that our inversion scheme needs is a crustal model and approximate source location, so the method proposed here may represent an improvement on existing early warning approaches that rely on foreknowledge of fault locations and geometries.
机译:我们描述了一种从使用全球定位系统接收器网络测得的静态位移集中确定地震最佳质心矩张量解的方法。使用2010年4月4日墨西哥M_W 7.2 El Mayor-Cucapah地震后观测到的静态位移,我们进行迭代反演以获得震源机制和震源位置,从而最大程度地减小了数据与合成物之间的最小二乘方差。我们对分层弹性介质中的静态位移进行正向建模的算法效率高,可在单个处理器上实时执行反演,而无需预先计算激励核库。我们提供了El Mayor-Cucapah地震的模拟实时结果。我们的反演方案所需的唯一先验信息是地壳模型和近似震源位置,因此这里提出的方法可能代表了对现有预警方法的一种改进,该方法依赖于对断层位置和几何形状的了解。

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