Surface wave tomography of the arctic from seismic Rayleigh and Love wave group velocity dispersion data

L. V. Seredkina
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Abstract

The results of studying the deep structure of the Earth’s crust and upper mantle of the Arctic from surface wave data are presented. For this purpose, based on the frequency-time analysis procedure, a representative dataset of group velocity dispersion curves of seismic Rayleigh and Love waves (1555 and 1265 paths, respectively) in the period range from 10 to 250 s is obtained. With the use of a two-dimensional tomography technique for a spherical surface, group velocity distributions are calculated at separate periods. Overall, 18 maps for each type of surface waves are constructed and the horizontal resolution of the mapping is estimated. For four tectonically different regions of the Arctic, the dispersion curves calculated from the tomography results are inverted for the velocity sections of the SV- and SH-waves. Based on the obtained distributions, the main large-scale features are analyzed in the deep structure of the Earth’s crust and upper mantle of the Arctic, and the revealed velocity irregularities are correlated to various geological structures. The results of the study are of considerable interest for further constructing the three-dimensional model of the shear wave velocity distributions and for studying the anisotropic properties of the upper mantle of the Arctic, as well as for building the geodynamical models of the region.
基于瑞利波和洛夫波群速度频散资料的北极面波层析成像
本文介绍了利用表面波资料研究北极地壳和上地幔深部结构的结果。为此,基于频率-时间分析方法,获得了10 ~ 250 s周期内Rayleigh波和Love波(1555路和1265路)群速频散曲线的代表性数据集。利用球面二维层析成像技术,在不同的周期计算群速度分布。总的来说,为每种表面波构造了18张地图,并估计了地图的水平分辨率。对于北极四个构造不同的区域,利用层析成像结果计算的频散曲线对SV波和sh波的速度剖面进行了反演。在此基础上,分析了北极地壳和上地幔深部结构的主要大尺度特征,揭示了速度异常与各种地质构造的关系。研究结果对进一步建立北极横波速度分布的三维模型、研究北极上地幔的各向异性以及建立该地区的地球动力学模型具有重要意义。
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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