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Inversion stability analysis of multimode Rayleigh-wave dispersion curves using low-velocity-layer models

机译:基于低速层模型的多模瑞利波频散曲线反演稳定性分析

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摘要

Surface wave inversion is increasingly applied to estimate near-surface shear (S)-wave velocities for geological structures. Our study addresses the sensitivity and stability of the Rayleigh-wave multimode dispersion-curve inversion for earth models containing a low-velocity layer. Due to the dependence of Rayleigh-waves on the S-wave velocity over a range of depth, the inverted Vs generally have uncertainties that vary with depth and structure. An evolutionary algorithm was used to provide a population of final models from inversion of multimode Rayleigh-wave dispersion curves. We analysed the uncertainties of inversion results for three irregular Vs structures, i.e., three models with a low S-wave velocity layer. The results show that 1) because the low-velocity layer traps the energy of Rayleigh-waves and makes the wave travel within it, Rayleigh-wave phase velocities are insensitive to variations in layers beneath a low-velocity layer. This characteristic can influence the inversion stability for these layers' parameters. 2) The high degrees of uncertainties of inverted Vs for these layers still remain although the higher mode Rayleigh-wave data are included in the inversion procedure. It can be concluded that Vs estimates for layers beneath a low-velocity layer are with a low degree of confidence and need to be treated with extra caution.
机译:地表波反演越来越多地用于估算地质构造的近地表剪切(S)波速度。我们的研究针对包含低速层的地球模型,探讨了瑞利波多模色散曲线反演的灵敏度和稳定性。由于瑞利波在一定深度范围内对S波速度的依赖性,因此反相Vs通常具有随深度和结构而变化的不确定性。进化算法被用来提供多模瑞利波频散曲线反演的最终模型。我们分析了三个不规则Vs结构(即三个低S波速度层的模型)反演结果的不确定性。结果表明:1)由于低速层捕获了瑞利波的能量并使波在其中传播,因此瑞利波的相速度对低速层下面各层的变化不敏感。该特性会影响这些层参数的反演稳定性。 2)尽管在反演程序中包括了较高模态的瑞利波数据,但这些层反演Vs的不确定度仍然很高。可以得出结论,低速层下面的层的Vs估计具有低置信度,需要格外小心。

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