Three-dimensional imaging of shear wave velocity in the uppermost 30 m of the soil column in Anchorage, Alaska (original) (raw)
Delineation of spatial variation of shear wave velocity with high-frequency Rayleigh waves in Anchorage, Alaska
Sankar K. Nath
Geophysical Journal International, 2000
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Crustal shear wave velocity structure of the western United States inferred from ambient seismic noise and earthquake data
Michael Ritzwoller
Journal of Geophysical Research, 2010
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A Shallow Shear-Wave Velocity Transect across the Reno, Nevada, Area Basin
John Louie
Bulletin of the Seismological Society of America, 2004
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Shear-wave velocity profiling at sites with high stiffness contrasts: a comparison between invasive and non-invasive methods
Giuseppe Di Giulio
Near Surface Geophysics, 2009
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Shear - and Compressional Wave Velocity Measurements from Two 150-m- Deep Boreholes in Seattle, Washington, USA
Kathy Troost
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A 3-D shear velocity model of the crust and uppermost mantle beneath the United States from ambient seismic noise
Michael Ritzwoller
Geophysical Journal International, 2009
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Shear-wave velocity of the ground near sixty California strong motion recording sites by the spectral analysis of surface waves (SASW) method and harmonic-wave sources
Diane Minasian
Open-File Report, 2005
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Shear wave velocity model of the Santiago de Chile basin derived from ambient noise measurements: a comparison of proxies for seismic site conditions and amplification
Jaime CAMPOS M.
Geophysical Journal International, 2010
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Shear-wave velocity structure in the northern Basin and Range province from the combined analysis of receiver functions and surface waves
Martha Savage
Bulletin of the …, 1997
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Determination of shallow shear-wave velocity at Mississippi embayment sites using vertical seismic profiling data
Scott Stovall
2007
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Evaluation of shear-wave velocity profiles from ambient vibration array recordings in SW British Columbia , Canada
Carlos Estuardo Ventura
2012
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The Importance of Crustal Shear Wave Velocity Profile for Ground Motion Modelling
Nelson Lam
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Measurement and interpretation of downhole seismic probe data for estimating shear wave velocity in deep-water environments
Mehrashk Meidani
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The Ataköy vertical array (Turkey): insights into seismic wave propagation in the shallow-most crustal layers by waveform deconvolution
Atilla Ansal
Geophysical Journal International, 2009
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Estimating shear-waves velocity structure by using array methods ( FK and SPAC ) and inversion of ellipticity curves at a site in south of Tehran
N. Mirzaei
2008
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The effect of crustal structure on strong ground motion attenuation relations in eastern North America
Robert Herrmann
Bulletin of the Seismological Society of America, 1987
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The Aterno valley strong-motion array: seismic characterization and determination of subsoil model
Giuseppe Lanzo
Bulletin of Earthquake Engineering
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The importance of shear wave velocity information of a soil site
Michael Asten
… Earthquake Eng Soc, 2005
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A First‐Layered Crustal Velocity Model for the Western Solomon Islands: Inversion of the Measured Group Velocity of Surface Waves Using Ambient Noise
Shuei-Huei You
Seismological Research Letters, 2018
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Evaluation of horizontal to vertical spectral ratio and standard spectral ratio methods for mapping shear wave velocity across anchorage, Alaska
Utpal Dutta
Soil Dynamics and Earthquake Engineering, 2021
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Waveform Modeling of Earthquake Data for Delineating the Sedimentary Structure of the Anchorage Basin, Alaska
Utpal Dutta
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Two-dimensional earthquake vibrations in sedimentary basins – SH waves
Mihailo Trifunac
Soil Dynamics and Earthquake Engineering, 2014
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Seismic Velocity Measurements at Expanded Seismic Network Sites
Zhenming Wang
2005
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In Situ Shear‐Wave Velocity Measurements at the Delaney Park Downhole Array, Anchorage, Alaska
John Thornley
Seismological Research Letters
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A Comparison of Four Geophysical Methods for Determining the Shear Wave Velocity of Soils
Ahmed M. Ismael
Environmental and Engineering Geoscience, 2007
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Ambient Noise Tomography for a High-resolution 3D S-Wave Velocity Model of the Kinki Region, Southwestern Japan, using Dense Seismic Array Data
Bokani Nthaba
Research Square (Research Square), 2022
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