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Geoacoustic Uncertainties From Viscoelastic Inversion of Seabed Reflection Data

机译:海床反射数据粘弹性反演的地声不确定性

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This paper applies nonlinear Bayesian inversion to seabed reflection data to estimate viscoelastic parameters of the upper sediments. The inversion provides maximum a posteriori probability (MAP) parameter estimates with uncertainties quantified in terms of marginal probability distributions, variances, and credibility intervals; interparameter relationships are quantified by correlations and joint marginal distributions. The inversion is applied to high-resolution reflectivity data from two sites in the Strait of Sicily. One site is characterized by low-speed sediments, resulting in data with a well-defined angle of intromission; the second is characterized by high-speed sediments, resulting in a critical angle. Data uncertainties are quantified using several approaches, including maximum-likelihood (ML) estimation, treating uncertainties as nuisance parameters in the inversion, and analysis of experimental errors. Statistical tests are applied to the data residuals to validate the assumed uncertainty distributions. Excellent results (i.e., small uncertainties) are obtained for sediment compressional-wave speed, compressional attenuation, and density; shear parameters are less well determined although low shear-wave speeds are indicated. The Bayesian analysis provides a quantitative comparison of inversion results for the two sites in terms of the resolution of specific geoacoustic parameters, and indicates that the geoacoustic information content is significantly higher for intromission data
机译:本文将非线性贝叶斯反演应用于海床反射数据,以估算上层沉积物的粘弹性参数。该反演提供了最大后验概率(MAP)参数估计,并具有根据边际概率分布,方差和可信度区间量化的不确定性;参数间关系通过相关性和联合边际分布来量化。该反演应用于来自西西里海峡两个站点的高分辨率反射率数据。一个站点的特征是低速沉积物,从而产生了具有明确定义的入射角的数据。第二个特征是高速沉积物,形成临界角。数据不确定性使用几种方法进行量化,包括最大似然(ML)估计,将不确定性作为反演中的干扰参数以及分析实验误差。将统计检验应用于数据残差以验证假设的不确定性分布。沉积物的压缩波速度,压缩衰减和密度获得了极好的结果(即不确定性很小);尽管指示了低剪切波速度,但剪切参数的确定性较差。贝叶斯分析提供了两个站点反演结果在特定地声参数解析方面的定量比较,并表明对于引入数据而言,地声信息含量明显更高

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