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首页> 外文期刊>Oceanology >Determination of Two-Dimensional Velocity Structure of Benioff Zone Based on Inversion of Body Wave Travel Time (Case Study of Central Kamchatka)
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Determination of Two-Dimensional Velocity Structure of Benioff Zone Based on Inversion of Body Wave Travel Time (Case Study of Central Kamchatka)

机译:基于体波传播时间反演的贝尼奥夫带二维速度结构确定(以堪察加半岛中部为例)

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A 2D variant of the inversion method for determining velocities within the Benioff zone of Kamchatka is developed with respect to the time of seismic wave travel from the foci group to Shipunskii station located in the region where the zone outcrops at the ocean bottom. The method is based on the idea of seismic tomography on the relationship between travel time discrepancies along the focus-station path and the value of seismic slowness, which is inverse to the velocity and corresponds to the gradient of the time field or the derivative of a hodograph with respect to the distance dt/dl. From this viewpoint, the field of discrepancies observed is the difference between the experimental and theoretical values of slowness. Its averaging with respect to depth and epicentral distance in 50 x 50 km rectangular windows and subsequent inversion make it possible to obtain a discrete velocity field using the GoldenSoftware Surfer program. Resmoothing with the same software leads to a variant of continuous velocity distribution = in the axial plane of the Benioff zone. The described procedure was used to calculate the velocities in this zone of the southern Kuril Islands and southern and central Kamchatka. The principal result in the latter case is identification of a sharp jump in the velocities of body waves in the upper mantle (up to 1.3 km/s for P-waves and up to 0.8 km/s for S-waves) beneath the Kronotskii Peninsula in the 7 years before the catastrophic Kronotskii earthquake that occurred in 1997 (M = 7.9) with an upthrow focal mechanism. This jump reflects the concentration of stresses in the epicentral zone of the earthquake. This result is important for medium-term forecasting of strong earthquakes.
机译:针对地震波从震源群到位于海底露头区域的希普恩斯基站的地震波传播的时间,开发了用于确定堪察加贝尼奥夫区内速度的反演方法的二维变形。该方法基于地震层析成像的思想,即沿聚焦站路径的传播时间差异与地震慢度值之间的关系,地震慢度值与速度成反比,并且对应于时间场的梯度或a的导数相对于距离dt / dl的全息图。从这个角度来看,观察到的差异领域是慢度的实验值与理论值之间的差异。其在50 x 50 km矩形窗口中的深度和震中距离的平均值以及随后的反演使使用GoldenSoftware Surfer程序获得离散速度场成为可能。使用相同的软件进行平滑处理会导致在Benioff区的轴向平面上产生连续速度分布=的变体。所描述的程序用于计算南部千岛群岛以及堪察加半岛中部和南部地区的速度。在后一种情况下,主要结果是确定了克罗诺斯基半岛下方上地幔中体波速度的急剧跳跃(P波高达1.3 km / s,S波高达0.8 km / s)。发生在1997年发生巨灾的克罗诺斯基(Kronotskii)地震之前的7年(M = 7.9),并有一个上倾的震源机制。这种跳跃反映了地震震中区域的应力集中。该结果对于强地震的中期预报非常重要。

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