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Determination of Rayleigh wave dispersion curves for near surface applications in unconsolidated sediments

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PreviousNext No AccessSEG Technical Program Expanded Abstracts 2003Determination of Rayleigh wave dispersion curves for near surface applications in unconsolidated sedimentsAuthors: G. Dal MoroM. PipanE. ForteI. FinettiG. Dal MoroExploration Geophysics Group, Department of Geological Environmental and Marine Sciences, University of Trieste, Italy, M. PipanExploration Geophysics Group, Department of Geological Environmental and Marine Sciences, University of Trieste, Italy, E. ForteExploration Geophysics Group, Department of Geological Environmental and Marine Sciences, University of Trieste, Italy, and I. FinettiExploration Geophysics Group, Department of Geological Environmental and Marine Sciences, University of Trieste, Italyhttps://doi.org/10.1190/1.1817508 SectionsAboutPDF/ePub ToolsAdd to favoritesDownload CitationsTrack CitationsPermissions ShareFacebookTwitterLinked InRedditEmail Permalink: https://doi.org/10.1190/1.1817508FiguresReferencesRelatedDetailsCited ByPerformance of Different Transformation Techniques for MASW Data Processing Considering Various Site Conditions, Near-Field Effects, and Modal Separation23 September 2021 | Surveys in Geophysics, Vol. 42, No. 5Measurement of Multichannel Analysis of Surface Wave in the South of Pangandaran as an Effort for Earthquake Hazard MitigationJournal of Physics: Conference Series, Vol. 1951, No. 1One- and Two-Dimensional Active MASW Survey for Subsurface Profiling of Jia Bharali River Bed, Assam, India, for a Proposed 1.2-Km Road BridgePractice Periodical on Structural Design and Construction, Vol. 25, No. 3Integrated shallow seismic imaging of a settlement located in a historical landslide area4 December 2019 | Bulletin of Engineering Geology and the Environment, Vol. 79, No. 4Introduction: A Miscellanea21 June 2020Effect of Source Characteristics on the Resolution of Dispersion Image from Active MASW Survey2 November 2018 | Indian Geotechnical Journal, Vol. 49, No. 3Combination of dispersion curves from MASW measurementsSoil Dynamics and Earthquake Engineering, Vol. 113Evaluating the effectiveness of the MASW technique in a geologically complex terrain10 April 2018 | Journal of Physics: Conference Series, Vol. 995Tool for analysis of multichannel analysis of surface waves (MASW) field data and evaluation of shear wave velocity profiles of soilsCanadian Geotechnical Journal, Vol. 55, No. 2Improved Holistic Analysis of Rayleigh Waves for Single- and Multi-Offset Data: Joint Inversion of Rayleigh-Wave Particle Motion and Vertical- and Radial-Component Velocity Spectra7 November 2017 | Pure and Applied Geophysics, Vol. 175, No. 1Multichannel analysis of surface waves (MASW) for seismic site characterization using 2D genetic algorithm at Bahrah area, Wadi Fatima, Saudi Arabia16 June 2016 | Arabian Journal of Geosciences, Vol. 9, No. 8Assessing ground compaction via time lapse surface wave analysisActa Geodynamica et GeomaterialiaJoint analysis of Rayleigh-wave dispersion and HVSR of lunar seismic data from the Apollo 14 and 16 sitesIcarus, Vol. 254DISPERSION-CURVE IMAGING CONSIDERATIONS WHEN USING MULTICHANNEL ANALYSIS OF SURFACE WAVE (MASW) METHODJulian Ivanov, Richard D. Miller, Sarah Morton, and Shelby Peterie26 March 2015Geo-Characterization at selected accelerometric stations in Crete (Greece) and comparison of earthquake data recordings with EC8 elastic spectraOpen Geosciences, Vol. 6, No. 1An overview of surface wave methods and a reliability study of a simplified inversion techniqueSoil Dynamics and Earthquake Engineering, Vol. 31, No. 12Imaging Dispersion of MASW Data—Full vs. Selective Offset SchemeJournal of Environmental and Engineering Geophysics, Vol. 16, No. 1Rayleigh wave dispersion curve inversion via genetic algorithms and Marginal Posterior Probability Density estimationJournal of Applied Geophysics, Vol. 61, No. 1Fast simulated annealing inversion of surface waves on pavement using phase-velocity spectraGEOPHYSICS, Vol. 71, No. 4Quantitative estimation of minimum offset for multichannel surface-wave survey with actively exciting sourceJournal of Applied Geophysics, Vol. 59, No. 2Dominant Higher Surface-wave Modes and Possible Inversion PitfallsJournal of Environmental and Engineering Geophysics, Vol. 10, No. 2Integrated archaeological exploration using geophysical methods at Futenma area, Okinawa prefecture, JapanBUTSURI-TANSA(Geophysical Exploration), Vol. 58, No. 5 SEG Technical Program Expanded Abstracts 2003ISSN (print):1052-3812 ISSN (online):1949-4645Copyright: 2003 Pages: 2452 publication data© 2003 Copyright © 2003 Society of Exploration GeophysicistsPublisher:Society of Exploration Geophysicists HistoryPublished: 03 Jan 2005 CITATION INFORMATION G. Dal Moro, M. Pipan, E. Forte, and I. Finetti, (2003), "Determination of Rayleigh wave dispersion curves for near surface applications in unconsolidated sediments," SEG Technical Program Expanded Abstracts : 1247-1250. https://doi.org/10.1190/1.1817508 Plain-Language Summary PDF DownloadLoading ...

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