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An approach to jointly invert hypocenters and 1D velocity structure and its application to the Lushan earthquake series

机译:震源和一维速度结构联合反演的方法及其在庐山地震序列中的应用

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摘要

Earthquake location is essential when defining fault systems and other geological structures. Many methods have been developed to locate hypocenters within a 1D velocity model. In this study, a new approach, named MatLoc, has been developed which can simultaneously invert for the locations and origin times of the hypocenters and the velocity structure, from the arrival times of local earthquakes. Moreover, it can invert for layer boundary depths, such as Moho depths, which can be well constrained by the Pm and Pn phases. For this purpose, the package was developed to take into account reflected phases, e.g., the Pm phase. The speed of the inversion is acceptable due to the use of optimized matrix calculations. The package has been used to re-locate the Lushan earthquake series which occurred in Sichuan, China, from April 20 to April 22, 2013. The results obtained with the package show that the Lushan earthquake series defines the dip of the Guankou fault, on which most of the series occurred, to be 39A degrees toward the NW. Further, the surface projection of the Lushan earthquake series is consistent with the regional tectonic strike which is about N45A degrees E.
机译:在定义断层系统和其他地质结构时,地震的位置至关重要。已经开发了许多方法来在一维速度模型中定位震源。在这项研究中,已经开发了一种名为MatLoc的新方法,该方法可以根据局部地震的到达时间同时反转震源的位置和起源时间以及速度结构。此外,它可以反转层边界深度,例如Moho深度,这些边界深度可以很好地受到Pm和Pn相的约束。为此,开发该软件包时要考虑到反射阶段,例如Pm阶段。由于使用了优化的矩阵计算,因此反转速度是可以接受的。该程序包已用于重新定位2013年4月20日至4月22日在中国四川发生的庐山地震系列。通过该程序包获得的结果表明,庐山地震系列定义了关口断层的倾角。大部分发生在向西北方向39A度。此外,庐山地震系列的地表投影与区域构造走向一致,约为E45A度。

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