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Defining static correction for jointly relocated earthquakes along the Blanco Transform Fault Zone based on SOSUS hydrophone data

机译:基于SOSUS水听器数据定义沿Blanco变换断层带共同搬迁的地震的静校正

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The Blanco Transform Fault Zone (BTFZ) is a complex /spl sim/350 km long segment of the boundary between the Pacific and Juan de Fuca plates, located /spl sim/200-500 km west of Point Blanco on the Oregon coastline. Individually located earthquake epicenters reported by the International Seismological Centre and the U.S. Geological Survey's National Earthquake Information Center along the BTFZ are not well correlated spatially with the active transform boundary due to poor azimuthal distribution of recording stations, inaccurate crustal velocity models or random reporting errors. More accurate locations of 120 m/sub b/ /spl ges/ 5.0 earthquakes relative to each other have been obtained using the joint-relocation method of Jordan and Sverdrup (1981). The Jordan-Sverdrup method simultaneously relocates epicenters in clusters of up to 20 events, yielding improved locations for epicenters within the cluster relative to each other. Six of the earthquakes in this set have been independently located using data from the U.S. Navy's SOSUS hydrophone array, enabling specification of a static correction to obtain improved absolute locations for the epicenters relative to the BTFZ. Of several methods evaluated, the preferred method to define the static correction in this case used the pole to the best-fit great circle through the six reference epicenters as one of the two necessary fiducial points, and the projection of the largest earthquake onto the best-fit great circle as the other fiducial point. The fiducial points were used to define the rotation parameters for the static correction. The 95% confidence ellipses of the relocated epicenters generally fall on or very near active structural features along the BTFZ after application of the static correction.
机译:Blanco转换断层带(BTFZ)是太平洋/胡安·德富卡板块之间边界的复杂/ spl sim / 350 km长段,位于俄勒冈州海岸线上的Blanco以西/ spl sim / 200-500 km。国际地震中心和美国地质调查局BTFZ沿线国家地震信息中心报告的个别震中,由于记录站的方位角分布不佳,地壳速度模型不准确或随机报告错误,在空间上与活动转换边界没有很好的相关性。使用Jordan和Sverdrup(1981)的联合重定位方法已经获得了相对精确的120 m / sub b / / spl ges / 5.0地震的位置。 Jordan-Sverdrup方法同时将震中重定位到最多20个事件的群集中,从而使群集中震中相对于彼此的位置得到了改善。使用来自美国海军SOSUS水听器阵列的数据已独立定位了该组中的六次地震,从而能够指定静态校正值,以获得震中相对于BTFZ的绝对位置。在评估的几种方法中,在这种情况下,定义静校正的首选方法是将极点穿过六个参考震中点,以最适合的大圆作为两个必要基准点之一,然后将最大的地震投影到最佳点上。 -适合大圆圈作为另一个基准点。基准点用于定义静态校正的旋转参数。在应用静态校正之后,重新定位的震中的95%置信椭圆通常会落在BTFZ上或非常靠近BTFZ的活动结构特征上。

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