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Relationships between compressional-wave and shear-wave velocities in clastic silicate rocks

Geophysics · 1985 · Vol. 50(4) · pp. 571–581
John P. CastagnaMichael BatzleRaymond L. Eastwood

Abstract

Abstract New velocity data in addition to literature data derived from sonic log, seismic, and laboratory measurements are analyzed for clastic silicate rocks. These data demonstrate simple systematic relationships between compressional and shear wave velocities. For water-saturated clastic silicate rocks, shear wave velocity is approximately linearly related to compressional wave velocity and the compressional-to-shear velocity ratio decreases with increasing compressional velocity. Laboratory data for dry sandstones indicate a nearly constant compressional-to-shear velocity ratio with rigidity approximately equal to bulk modulus. Ideal models for regular packings of spheres and cracked solids exhibit behavior similar to the observed water-saturated and dry trends. For dry rigidity equal to dry bulk modulus, Gassmann's equations predict velocities in close agreement with data from the water-saturated rock.

Seismic Imaging and Inversion TechniquesSeismic Waves and AnalysisDrilling and Well EngineeringGeologyClastic rockShear (geology)Shear modulusLongitudinal waveShear velocitySilicateMineralogyBulk modulusWave velocity
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References
Elastic waves through a packing of spheres
Geophysics · 1951 · 1,203 citations
Origin of Sedimentary Rocks
Soil Science · 1973 · 1,079 citations
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