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首页> 外文期刊>Autonomic neuroscience: basic & clinical >Seismic inversion of soil damping and stiffness using multichannel analysis of surface wave measurements in the marine environment
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Seismic inversion of soil damping and stiffness using multichannel analysis of surface wave measurements in the marine environment

机译:海洋环境中表面波测量多通道分析的土壤阻尼和刚度的地震反演

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摘要

Determination of soil material damping is known to be difficult and uncertain, especially in the offshore environment. Using an advanced inversion methodology based on multichannel spectral analysis, Scholte and Love wave measurements are used to characterize subsea soil from a North Sea site. After normalization, a determinant-based objective function is used in a genetic algorithm optimization to estimate the soil shear modulus. The inverted shear-modulus profile is comparable to previously published results for the same data, although a higher degree of certainty is achieved in the near-surface layers. The half-power bandwidth method is used for extracting the attenuation curve from the measurements and efficient reference data points are chosen based on wavelet compression. The material-damping ratio inversion is performed using a modified stochastic optimization algorithm. Accounting for measurement errors, the material-damping ratio profile is retrieved from the fundamental-mode Scholte wave with a high degree of certainty. Furthermore, a method is proposed for identifying the frequency dependence of the material-damping ratio from in situ measurements. No evidence for frequency dependence is found and the small-strain soil material-damping ratio at this site can be said to be frequency independent for the measured conditions.
机译:众所周知,土壤材料阻尼的测定是困难和不确定的,尤其是在海上环境中。使用基于多通道光谱分析的高级反转方法,学者和爱情波测量用于表征来自北海网站的海底土壤。在归一化之后,在遗传算法优化中使用基于决定因素的目标函数来估计土壤剪切模量。倒置剪切模量分布与先前公布的相同数据的结果相当,尽管在近表面层中实现了更高程度的确定性。半功率带宽方法用于从测量中提取衰减曲线,并且基于小波压缩选择有效的参考数点。使用修改的随机优化算法进行材料阻尼比反转。考虑测量误差,从基本模式学者波浪中检索高度确定性的材料阻尼比例。此外,提出了一种方法,用于识别材料阻尼比的频率依赖性从原位测量。没有发现频率依赖性的证据,并且可以据说该位点的小菌株土壤材料阻尼比对于测量条件无关。

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