On the use of a seismic sensor as a seismic source
David Halliday, Taiwo Fawumi, Johan O. A. Robertsson, Ed Kragh
Abstract
David Halliday, Taiwo Fawumi, Johan O. A. Robertsson, Ed Kragh
Abstract
ABSTRACT We investigated the use of seismic sensors as small seismic sources. A voltage signal is applied to a geophone that forces the mass within the geophone to move. The movement of the mass generates a seismic wavefield that was recorded with an array of geophones operating in the conventional sense. We observed higher-frequency (25 Hz and above) surface and body waves propagating from the geophone source at offsets of 10 s of meters. We further found that the surface waves emitted from geophone sources can be used to generate a surface-wave group velocity map. We discuss potential developments and future applications.
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ABSTRACT We investigated the use of seismic sensors as small seismic sources. A voltage signal is applied to a geophone that forces the mass within the geophone to move. The movement of the mass generates a seismic wavefield that was recorded with an array of geophones operating in the conventional sense. We observed higher-frequency (25 Hz and above) surface and body waves propagating from the geophone source at offsets of 10 s of meters. We further found that the surface waves emitted from geophone sources can be used to generate a surface-wave group velocity map. We discuss potential developments and future applications.
Key concepts: Geophone, Vertical seismic profile, Geology, Seismology, Seismic wave, Seismic velocity, Passive seismic, SIGNAL (programming language)