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Construction of regional and local seismic anisotropic structures from wide-angle seismic data : crustal deformation in the southeast of China

机译:利用广角地震资料构建区域和局部地震各向异性结构:中国东南地区的地壳变形

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摘要

We present a method to obtain spatial distributions of seismic anisotropy associated with regional stress and local faulting in the crust from wide-angle seismic data. The method contains three steps. The first step consists of obtaining radial- and transverse-component seismic sections using a pre-stack depth migration algorithm from the S-wave velocity model determined by conventional interpretation of picked intra-crustal seismic events. In the second step, we compute time delays between split shear-waves and polarizations of fast split shear-waves by minimizing the transverse-component seismic energy. The time delay and polarization in each layer are derived using a layer-stripping method. The final step is to estimate the average splitting parameters along the whole profile. Thus, the average time delay and polarization can be regarded as caused by the effects owing to regional structure and stress fields, whereas the residual values of the splitting parameters are considered to be related to local structures and local faulting. Our method allows us to construct multi-layer anisotropic images, which may later be interpreted in terms of intra-layer coupling/decoupling or deformation. We present results from a set of three-component seismic data acquired by a controlled source experiment in the southeast region of China. The results demonstrate that the average polarizations and time delays are consistent with the direction and strength of the stress field, and their lateral variations related to local anisotropy match the spatial distribution of surface faulting crossing the acquisition seismic profile. ud
机译:我们提出了一种从广角地震数据中获取与地壳中的区域应力和局部断层有关的地震各向异性的空间分布的方法。该方法包含三个步骤。第一步包括使用叠前深度偏移算法从S波速度模型中获取径向和横向分量地震剖面,该S波速度模型是通过对常规地壳内地震事件的常规解释确定的。在第二步中,我们通过最小化横向分量地震能量来计算分裂剪切波和快速分裂剪切波的极化之间的时间延迟。每层中的时间延迟和极化是使用分层方法得出的。最后一步是估计整个剖面的平均分裂参数。因此,可以将平均时延和极化看作是由区域结构和应力场引起的影响所致,而分裂参数的残值被认为与局部结构和局部断层有关。我们的方法允许我们构造多层各向异性图像,以后可以根据层内耦合/去耦或变形来解释。我们介绍了一组三分量地震数据的结果,这些数据是通过中国东南地区的受控源实验获得的。结果表明,平均极化和时延与应力场的方向和强度一致,并且它们与局部各向异性有关的横向变化与穿越采集地震剖面的地表断层的空间分布相匹配。 ud

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  • 年度 2009
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  • 正文语种 {"code":"en","name":"English","id":9}
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