K-means for earthquakes: disaggregation analyses of small events by considering wave components and soil types

IF 1.827 Q2 Earth and Planetary Sciences
Enrico Zacchei, Reyolando Brasil
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引用次数: 0

Abstract

In this paper, k-means algorithm has been used to disaggregate seismic parameters to evaluate their inter-correlations. A goal is to quantify in a disaggregated way the weights and effects of each parameter with respect to other ones. From the database, about 4900.0 data, divided into 22.0 categories, have been collected. The main divisions regard the wave components in horizontal and vertical axis and the soil characteristics. The studied seismic zone is the “Norpirenaica oriental,” placed in the Pyrenees area between Spain and France, classified as a very high seismic hazard. Numerical and analytical analyses have been carried out to implement the algorithm. Preliminary analyses and results would quantify the role of the sand horizontal stratigraphy, the non-linear effects, the elasticity of the soil, and the energy damping phenomenon. Curves are plotted in stochastic distributions and elastic spectra accelerations. Results show good prediction for vertical spectral accelerations and for far and relative strong events. Rigorously, results are valid only for the studied seismogenic zone under predefined constrictions and ranges.

地震 K-均值:通过考虑波成分和土壤类型对小型事件进行分类分析
本文采用 k-means 算法对地震参数进行分类,以评估它们之间的相互关系。其目的是以分解的方式量化每个参数相对于其他参数的权重和影响。数据库共收集了约 4900.0 个数据,分为 22.0 个类别。主要分为水平轴和垂直轴的波成分以及土壤特性。研究的地震带为 "Norpirenaica oriental",位于西班牙和法国之间的比利牛斯山地区,被列为极高地震危险区。为实施该算法,进行了数值分析和分析。初步分析和结果将量化沙土水平地层、非线性效应、土壤弹性和能量阻尼现象的作用。绘制了随机分布和弹性谱加速度曲线。结果表明,对垂直频谱加速度以及远强和近强事件的预测效果良好。严格地说,结果仅适用于所研究的地震带,且在预先确定的限制条件和范围内。
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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来源期刊
Arabian Journal of Geosciences
Arabian Journal of Geosciences GEOSCIENCES, MULTIDISCIPLINARY-
自引率
0.00%
发文量
1587
审稿时长
6.7 months
期刊介绍: The Arabian Journal of Geosciences is the official journal of the Saudi Society for Geosciences and publishes peer-reviewed original and review articles on the entire range of Earth Science themes, focused on, but not limited to, those that have regional significance to the Middle East and the Euro-Mediterranean Zone. Key topics therefore include; geology, hydrogeology, earth system science, petroleum sciences, geophysics, seismology and crustal structures, tectonics, sedimentology, palaeontology, metamorphic and igneous petrology, natural hazards, environmental sciences and sustainable development, geoarchaeology, geomorphology, paleo-environment studies, oceanography, atmospheric sciences, GIS and remote sensing, geodesy, mineralogy, volcanology, geochemistry and metallogenesis.
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