Determination of the contrast boundaries of the low velocity zone by analyzing the features of the dispersion curves of the Rayleigh wave velocities based on empirical dependencies

R. A. Efremov, A. Serdyukov, A. Yablokov
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Abstract

An important application of the multichannel surface wave (MASW) method is seismic safety assessment. The key parameters in the calculation of increments in the input of seismic microzoning are the thickness and average velocity of the soil mass lying on the base of more rigid rocks. To determine these parameters, we propose a new method for constructing horizontally layered models of the upper part of the geological section using the features (positions of extrema of the second derivative) of the dispersion curves of phase velocities of the Rayleigh surface wave, which, as shown by numerical experiments, are associated with the position of contrasting boundaries in the medium under study. (e.g., the boundary between soils and rocks). This approach is much simpler than the problem of recovering a horizontally layered model traditionally solved in the MASW method from a set of phase velocities for a sequence of frequencies and does not require an initial approximation and/or any restrictions on the possible values of the model parameters. In the case of two-layer and three-layer media, our approach is reduced to a simple and fast application of explicit formulas.
基于经验依赖关系分析瑞利波速频散曲线特征,确定低速区对比边界
多道面波法的一个重要应用是地震安全性评价。计算地震微区划输入增量的关键参数是刚性较强岩石地基上土体的厚度和平均速度。为了确定这些参数,我们提出了一种利用瑞利面波相速度频散曲线的特征(二阶导数极值位置)构建地质剖面上部水平分层模型的新方法。数值实验表明,瑞利面波相速度频散曲线的特征与研究介质中对比边界的位置有关。(例如,土壤和岩石之间的边界)。这种方法比传统的MASW方法从一组频率序列的相速度中恢复水平分层模型的问题要简单得多,并且不需要初始近似和/或对模型参数的可能值的任何限制。在两层和三层介质的情况下,我们的方法被简化为简单而快速的显式公式应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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