Ab'/> Joint inversion of seismic and gravity data for imaging seismic velocity structure of the crust and upper mantle beneath Utah, United States
首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Joint inversion of seismic and gravity data for imaging seismic velocity structure of the crust and upper mantle beneath Utah, United States
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Joint inversion of seismic and gravity data for imaging seismic velocity structure of the crust and upper mantle beneath Utah, United States

机译:犹他州犹他州地壳和上部地幔的成像地震速度结构的地震和重力数据的联合反演

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AbstractWe present a method for using any combination of body wave arrival time measurements, surface wave dispersion observations, and gravity data to simultaneously invert for three-dimensional P- and S-wave velocity models. The simultaneous use of disparate data types takes advantage of the differing sensitivities of each data type, resulting in a comprehensive and higher resolution three-dimensional geophysical model. In a case study for Utah, we combine body wave first arrivals mainly from the USArray Transportable Array, Rayleigh wave group and phase velocity dispersion data, and Bouguer gravity anomalies to invert for crustal and upper mantle structure of the region. Results show clear delineations, visible in both P- and S-wave velocities, between the three main tectonic provinces in the region. Without the inclusion of the surface wave and gravity constraints, these delineations are less clear, particularly for S-wave velocities. Indeed, checkerboard tests confirm that the inclusion of the additional datasets dramatically improves S-wave velocity recovery, with more subtle improvements to P-wave velocity recovery, demonstrating the strength of the method in successfully recovering seismic velocity structure from multiple types of constraints.Highlights?
机译:<![cdata [ 抽象 我们呈现了一种使用身体波到达时间测量,表面波色散观察和重力数据的任何组合的方法同时反转三维P和S波速度模型。同时使用不同数据类型的利用每个数据类型的不同敏感性,导致全面且较高的分辨率三维地球物理模型。在犹他州的案例研究中,我们将主要来自USArray可传输阵列,瑞利波组和相速度色散数据,瑞利波组和相速度分散数据,以及Bouguer重力异常,以反转该区域的地壳和上部地幔结构。结果表明,在该地区的三个主要构造省份之间的P型和S波速度中可见的清晰划分。在不包含表面波和重力约束的情况下,这些划分少透明,特别是对于S波速度。实际上,棋盘测试确认包含附加数据集的含义显着提高了S波速度恢复,对P波速度恢复具有更大的细微改进,证明了从多种类型的约束中成功恢复地震速度结构的方法强度。< / ce:简单 - 段> 亮点

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