Ambient Seismic Noise Tomography of a Loess High Bank at Dunaszekcső (Hungary)

被引:0
|
作者
Gyöngyvér Szanyi
Zoltán Gráczer
Erzsébet Győri
Zdeněk Kaláb
Markéta Lednická
机构
[1] MTA CSFK GGI Kövesligethy Radó Seismological Observatory,
[2] Institute of Geonics,undefined
[3] Academy of Sciences of the Czech Republic,undefined
来源
关键词
Seismic interferometry; ambient noise; group velocity; tomography; landslide; high bank;
D O I
暂无
中图分类号
学科分类号
摘要
Loess high banks along the right side of the Danube in Hungary are potential subjects of landslides. Small scale ambient seismic noise tomography was used at the Dunaszekcső high bank. The aim of the study was to map near surface velocity anomalies since we assume that the formation of tension cracks—which precede landslides—are represented by low velocities. Mapping Rayleigh wave group velocity distribution can help to image intact and creviced areas and identify the most vulnerable sections. The study area lies at the top of the Castle Hill of Dunaszekcső, which was named after Castellum Lugio, a fortress of Roman origin. The presently active head scarp was formed in April 2011, and our study area was chosen to be at its surroundings. Cross-correlation functions of ambient noise recordings were used to retrieve the dispersion curves, which served as the input of the group velocity tomography. Phase cross-correlation and time-frequency phase weighted stacking was applied to calculate the cross-correlation functions. The average Rayleigh wave group velocity at the loess high bank was found to be 171 ms-1\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$^{-1}$$\end{document}. The group velocity map at a 0.1 s period revealed a low-velocity region, whose location coincides with a highly creviced area, where slope failure takes place along a several meter wide territory. Another low velocity region was found, which might indicate a previously unknown loosened domain. The highest velocities were observed at the supposed remnants of Castellum Lugio.
引用
收藏
页码:2913 / 2928
页数:15
相关论文
共 50 条
  • [11] Love wave tomography in Italy from seismic ambient noise
    Fabrizio Bernardi
    Alberto Michelini
    Earthquake Science, 2010, 23 (05) : 487 - 495
  • [12] Dead Sea Basin Imaged by Ambient Seismic Noise Tomography
    Stankiewicz, Jacek
    Weber, Michael H.
    Mohsen, Ayman
    Hofstetter, Rami
    PURE AND APPLIED GEOPHYSICS, 2012, 169 (04) : 615 - 623
  • [13] Ambient seismic noise Rayleigh wave tomography for the Pannonian basin
    Gyöngyvér Szanyi
    Zoltán Gráczer
    Erzsébet Győri
    Acta Geodaetica et Geophysica, 2013, 48 : 209 - 220
  • [14] Characteristics of ambient seismic noise as a source for surface wave tomography
    Yang, Yingjie
    Ritzwoller, Michael H.
    GEOCHEMISTRY GEOPHYSICS GEOSYSTEMS, 2008, 9
  • [15] Dead Sea Basin Imaged by Ambient Seismic Noise Tomography
    Jacek Stankiewicz
    Michael H. Weber
    Ayman Mohsen
    Rami Hofstetter
    Pure and Applied Geophysics, 2012, 169 : 615 - 623
  • [16] The seismic structure of Villarrica Volcano revealed by ambient noise tomography
    Urra-Tapia, Pablo
    Gonzalez-Vidal, Diego
    Miller, Matthew
    Palma, Jose Luis
    JOURNAL OF VOLCANOLOGY AND GEOTHERMAL RESEARCH, 2023, 439
  • [17] Ambient seismic noise Rayleigh wave tomography for the Pannonian basin
    Szanyi, Gyongyver
    Graczer, Zoltan
    Gyori, Erzsebet
    ACTA GEODAETICA ET GEOPHYSICA, 2013, 48 (02) : 209 - 220
  • [18] Trend of ambient seismic noise attenuation tomography: Theory and applications
    Liu, Xin
    Li, Zhanwen
    SCIENCE CHINA-EARTH SCIENCES, 2024, 67 (10) : 3326 - 3330
  • [19] Trend of ambient seismic noise attenuation tomography:Theory and applications
    Xin LIU
    Zhanwen LI
    ScienceChinaEarthSciences, 2024, 67 (10) : 3326 - 3330
  • [20] Tomography of the Alpine region from observations of seismic ambient noise
    Stehly, L.
    Fry, B.
    Campillo, M.
    Shapiro, N. M.
    Guilbert, J.
    Boschi, L.
    Giardini, D.
    GEOPHYSICAL JOURNAL INTERNATIONAL, 2009, 178 (01) : 338 - 350