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Surface wave tomography method based on data from distant earthquakes

机译:基于远震数据的面波层析成像方法

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The standard method of surface wave tomography assumes the use of data on surface wave velocities measured on paths wholly located inside the region being investigated and oriented in different directions. If the data on group velocities obtained in the regional network of stations are used for this purpose, then the earthquake sources also should be situated within the limits of this region. If the region is small, then this requirement restricts the range of periods of surface waves and, correspondingly, the depth of research. The use of data from distant earthquakes enlarges the range of periods. However, it does not enable one to use the usual tomography method because of an inappropriate configuration of the system of paths: outside of the region in which the stations are located, the paths do not intersect, but, at the same time, the paths from a particular earthquake source toward the different stations of networks are very close over a large distance, and the mean correction to the velocity in the path sections outside of the network of stations can be accepted as identical. This assumption forms the basis of the proposed modification of the method of surface wave tomography, in which group velocities measured at stations of the local network from distant earthquakes are used. The lateral variations in the velocity are determined within the limits of the network, and the mean corrections to the velocity are determined on the paths from different earthquake sources in the sections outside of the network. As earlier, the condition of smoothness is imposed on the distribution of velocity variations, and the condition of smallness of the sum of their squares is imposed on the values of the corrections to the velocity. Testing of this method based on model examples and on real data obtained in the network of stations in Tibet showed its advantage over the standard tomography method.
机译:表面波层析成像的标准方法假设使用表面波速度数据,该数据是在整个位于被研究区域内并沿不同方向定向的路径上测得的。如果将在站点的区域网络中获得的团体速度数据用于此目的,则地震源也应位于该区域的范围内。如果该区域很小,那么此要求将限制表面波周期的范围,并相应地限制研究的深度。利用来自遥远地震的数据扩大了周期范围。但是,由于路径系统的配置不​​正确,因此无法使用常规的层析成像方法:在站所在区域之外,路径不相交,但同时路径相交从特定地震源到网络不同站点的距离很远,并且站点网络外部路径部分中速度的平均校正可以被认为是相同的。该假设构成了对表面波层析成像方法的拟议修改的基础,其中使用了从远处地震中在本地网络站点测得的群速度。在网络的限制范围内确定速度的横向变化,并在网络外部的不同地震源的路径上确定速度的平均校正量。如前所述,平滑度的条件被强加于速度变化的分布上,而其平方和之和的较小性的条件强加于对速度的校正值。根据模型实例和在西藏车站网络中获得的真实数据对该方法进行的测试表明,该方法优于标准的层析成像方法。

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