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Effective anisotropic elastic constants for wave propagation through cracked solids
Authors:Stuart Crampin
Affiliation:Institute of Geological Sciences, Murchison House, West Mains Road, Edinburgh EH9 3LA, Scotland
Abstract:Summary. Theoretical developments of Hudson demonstrate how to calculate the variations of velocity and attenuation of seismic waves propagating through solids containing aligned cracks. The analysis can handle a wide variety of crack configurations and crack geometries. Hudson associates the velocity variations with effective elastic constants. In this paper we associate the variation of attenuation with the imaginary parts of complex effective elastic constants. These complex elastic constants permit the simulation of wave propagation through two-phase materials by the calculation of wave propagation through homogeneous anisotropic solids.
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