Permeability estimation from velocity anisotropy in fractured rock

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Abstract

Cracks in a rock mass subjected to a uniaxial stress will be preferentially closed depending on the angle between the fracture normal vectors and the direction of the applied stress. If the prestress fracture orientation distribution is isotropic, the effective elastic properties of such a material after application of the stress are then transversely isotropic due to the overall alignment of the cracks still open. Velocity measurements in multiple directions are used to invert for the probability density function describing orientations of crack normals in such a rock. This is accomplished by expanding the crack orientation distribution function into generalized spherical harmonics. The information on fracture distribution obtained from the velocity inversion allows an estimation of the anisotropic permeability of the fractured rock system. -from Authors

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Gibson, R. L., & Toksoz, M. N. (1990). Permeability estimation from velocity anisotropy in fractured rock. Journal of Geophysical Research, 95(B10). https://doi.org/10.1029/jb095ib10p15643

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