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首页> 外文期刊>Bulletin of the Seismological Society of America >The Layered Shear-Wave Velocity Structure of the Crust and Uppermost Mantle in China
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The Layered Shear-Wave Velocity Structure of the Crust and Uppermost Mantle in China

机译:中国地壳和上地幔的层状剪切波速度结构

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We present a layered shear-wave velocity structure of the crust anduppermost mantle of China and the surrounding area. We apply an adaptive moving window (Sun, Li, et al., 2004) to construct the S-wave velocity model from highquality body-wave phase data extracted from the Annual Bulletin of Chinese Earthquakes (ABCE). More than 350,000 S-wave arrivals are used, spanning from 1990 to 2004. The study area is represented by a 1° geographic grid consisting of 2338 points. At each point, 1D S-velocity-depth profiles are determined independently from the surface to the uppermost mantle; this is accomplished by performing a Monte Carlo random search of optimum layer parameters (thickness and velocity) via minimizing travel-time misfits for fixed earthquake locations. Each profile contains a four-layer crust and a one-layer uppermost mantle. A final 3D model is obtained by combining and smoothing the 1D models. The obtained S-wave model has a good correlation with the previously published P-wave model using the same method (Sun, Li, et al., 2004) and reveals key tectonic features such as the low velocity crust beneath Tibet. Our S-wave model is generally consistent with the existing regional/local models constructed from body-wave travel-time tomography, and provides more detailed structure in both horizontal and vertical directions compared with the model derived from surface wave inversion. Based on our P- and S-wave models, the generated synthetic seismograms fit well with the observed seismograms recorded at broadband stations.
机译:我们提出了中国及周边地区地壳和最上层地幔的分层剪切波速度结构。我们应用自适应移动窗口(Sun,Li等,2004),从《中国地震年报》(ABCE)中提取的高质量体波相位数据构建S​​波速度模型。从1990年到2004年,使用了超过350,000个S波到达。研究区域以1°地理网格表示,其中包括2338个点。在每个点上,从表面到最上层地幔独立确定一维S速度深度剖面;这是通过对固定地震位置的旅行时间失配最小化,对最佳层参数(厚度和速度)执行蒙特卡洛随机搜索来完成的。每个剖面包含四层地壳和一层最上层地幔。通过组合和平滑1D模型可以获得最终的3D模型。所获得的S波模型与使用相同方法的先前发布的P波模型具有良好的相关性(Sun,Li等,2004),并揭示了关键的构造特征,例如西藏以下的低速地壳。我们的S波模型通常与通过体波传播时间断层扫描构造的现有区域/局部模型一致,并且与从表面波反演获得的模型相比,它在水平和垂直方向上都提供了更详细的结构。根据我们的P波和S波模型,生成的合成地震图与宽带站记录的观测地震图非常吻合。

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