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Stepwise joint inversion of surface wave dispersion, Rayleigh wave ZH ratio, and receiver function data for 1D crustal shear wave velocity structure

机译:一维地壳剪切波速度结构的面波频散,瑞利波ZH比和接收器函数数据的逐步联合反演

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摘要

Accurate determination of seismic velocity of the crust is important for understanding regional tectonics and crustal evolution of the Earth.We propose a stepwise joint linearized inversion method using surface wave dispersion,Rayleigh wave ZH ratio (i.e.,ellipticity),and receiver function data to better resolve 1D crustal shear wave velocity (Vs) structure.Surface wave dispersion and Rayleigh wave ZH ratio data are more sensitive to absolute variations of shear wave speed at depths,but their sensitivity kernels to shear wave speeds are different and complimentary.However,receiver function data are more sensitive to sharp velocity contrast (e.g.,due to the existence of crustal interfaces) and vp/vs ratios.The stepwise inversion method takes advantages of the complementary sensitivities of each dataset to better constrain the Vs model in the crust.We firstly invert surface wave dispersion and ZH ratio data to obtain a 1D smooth absolute Vs model and then incorporate receiver function data in the joint inversion to obtain a finer Vs model with better constraints on interface structures.Through synthetic tests,Monte Carlo error analyses,and application to real data,we demonstrate that the proposed joint inversion method can resolve robust crustal Vs structures and with little initial model dependency.
机译:准确确定地壳的地震速度对于理解地球的区域构造和地壳演化具有重要意义。我们提出了一种利用面波频散,瑞利波ZH比(即椭圆率)和接收函数数据更好地逐步进行联合线性化反演的方法解析一维地壳剪切波速度(Vs)结构。表面波频散和瑞利波ZH比数据对深度处的剪切波速度绝对变化更为敏感,但它们对剪切波速度的敏感度内核互不相同且互为补充。数据对剧烈的速度对比(例如,由于存在地壳界面)和vp / vs比更敏感。逐步反演方法利用每个数据集的互补敏感性,更好地约束地壳中的Vs模型。反演表面波频散和ZH比数据以获得一维平滑绝对Vs模型,然后合并接收器函数da ta通过联合反演获得了对界面结构有更好约束的更精细的Vs模型。通过综合测试,Monte Carlo误差分析并将其应用到实际数据中,我们证明了所提出的联合反演方法可以解决鲁棒的地壳Vs结构,并且几乎不需要初始模型依赖性。

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  • 来源
    《地震学报(英文版)》 |2017年第5期|229-238|共10页
  • 作者

    Ping Zhang; Huajian Yao;

  • 作者单位

    Laboratory of Seismology and Physics of Earth's Interior,School of Earth and Space Sciences, University of Science and Technology of China, Hefei 230026, Anhui, China;

    Laboratory of Seismology and Physics of Earth's Interior,School of Earth and Space Sciences, University of Science and Technology of China, Hefei 230026, Anhui, China;

    National Geophysical Observatory at Mengcheng, Mengcheng, Anhui, China;

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  • 入库时间 2022-08-19 03:55:19
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