A numerical investigation of wave-induced fluid flows in anisotropic fractured porous media
暂无分享,去创建一个
[1] Xiaofei Chen,et al. Dynamic SV‐Wave Signatures of Fluid‐Saturated Porous Rocks Containing Intersecting Fractures , 2022, Journal of Geophysical Research: Solid Earth.
[2] C. Arns,et al. Chemically Induced Evolution of Morphological and Connectivity Characteristics of Pore Space of Complex Carbonate Rock via Digital Core Analysis , 2022, Water Resources Research.
[3] Xiaofei Chen,et al. Theoretical modelling of seismic dispersion, attenuation, and frequency-dependent anisotropy in a fluid saturated porous rock with intersecting fractures , 2022, Geophysical Journal International.
[4] Y. Bazaikin,et al. Topology-based characterization of chemically-induced pore space changes using reduction of 3D digital images , 2021, J. Comput. Sci..
[5] T. Khachkova,et al. Influence of interfaces roughness on elastic properties of layered media , 2021, Probabilistic Engineering Mechanics.
[6] Yaroslav Bazaikin,et al. Digital image reduction for the analysis of topological changes in the pore space of rock matrix , 2021 .
[7] T. Daley,et al. CO2 messes with rock physics , 2021 .
[8] G. Reshetova,et al. Two-phase hyperbolic model for porous media saturated with a viscous fluid and its application to wavefields simulation , 2021, Applied Mathematical Modelling.
[9] Y. Bazaikin,et al. Computational topology-based characterization of pore space changes due to chemical dissolution of rocks , 2020 .
[10] A. Richard,et al. High-resolution 3D seismic imaging and refined velocity model building improve the image of a deep geothermal reservoir in the Upper Rhine Graben , 2020 .
[11] D. Thiéry,et al. Modelling water-rock interactions due to long-term cooled-brine reinjection in the Dogger carbonate aquifer (Paris basin) based on in-situ geothermal well data , 2020 .
[12] M. Novikov,et al. Wave Propagation in Fractured-Porous Media with Different Percolation Length of Fracture Systems , 2020, Lobachevskii Journal of Mathematics.
[13] J. Hunziker,et al. Seismic Signatures of Fractured Porous Rocks: The Partially Saturated Case , 2020, Journal of Geophysical Research: Solid Earth.
[14] C. Soulaine,et al. Multiphase flow modeling in multiscale porous media: An open-source micro-continuum approach , 2020, J. Comput. Phys. X.
[15] B. Gurevich,et al. Effects of Coupling Between Wave‐Induced Fluid Flow and Elastic Scattering on P‐Wave Dispersion and Attenuation in Rocks With Aligned Fractures , 2020, Journal of Geophysical Research: Solid Earth.
[16] Lanbo Liu,et al. 3D Numerical Simulation of Elastic Wave Propagation in Discrete Fracture Network Rocks , 2019, Pure and Applied Geophysics.
[17] M. Dumbser,et al. Modeling wavefields in saturated elastic porous media based on thermodynamically compatible system theory for two-phase solid-fluid mixtures , 2019, 1910.04207.
[18] M. Blunt,et al. Pore‐Scale Dissolution by CO2 Saturated Brine in a Multimineral Carbonate at Reservoir Conditions: Impact of Physical and Chemical Heterogeneity , 2019, Water Resources Research.
[19] M. Novikov,et al. Attenuation mechanisms in fractured fluid‐saturated porous rocks: a numerical modelling study , 2018, Geophysical Prospecting.
[20] M. Blunt,et al. 4D multi-scale imaging of reactive flow in carbonates: Assessing the impact of heterogeneity on dissolution regimes using streamlines at multiple length scales , 2018 .
[21] Monika Ivandic,et al. The first post‐injection seismic monitor survey at the Ketzin pilot CO2 storage site: results from time‐lapse analysis , 2018 .
[22] Rolf Krause,et al. Seismic Attenuation and Stiffness Modulus Dispersion in Porous Rocks Containing Stochastic Fracture Networks , 2018 .
[23] S. Zarrouk,et al. Reinjection of greenhouse gases into geothermal reservoirs , 2017 .
[24] S. Iglauer,et al. Carbon geosequestration in limestone: Pore-scale dissolution and geomechanical weakening , 2017 .
[25] B. Gurevich,et al. Effect of fracture fill on frequency‐dependent anisotropy of fractured porous rocks , 2017 .
[26] B. Gurevich,et al. Effects of fracture intersections on seismic dispersion: theoretical predictions versus numerical simulations , 2017 .
[27] S. Iglauer,et al. Effect of CT image size and resolution on the accuracy of rock property estimates , 2017 .
[28] Marco Milani,et al. Numerical upscaling in 2‐D heterogeneous poroelastic rocks: Anisotropic attenuation and dispersion of seismic waves , 2016 .
[29] M. Lebedev,et al. Laboratory measurements of the effect of fluid saturation on elastic properties of carbonates at seismic frequencies , 2016 .
[30] Vadim Lisitsa,et al. Numerical study of the interface errors of finite-difference simulations of seismic waves , 2014 .
[31] Mary F. Wheeler,et al. Quantifying the Representative Size in Porous Media , 2014, Transport in Porous Media.
[32] K. Holliger,et al. Seismoacoustic signatures of fracture connectivity , 2014 .
[33] Tobias M. Müller,et al. Do seismic waves sense fracture connectivity? , 2013 .
[34] J. Carcione,et al. Anisotropic poroelasticity and wave‐induced fluid flow: harmonic finite‐element simulations , 2011 .
[35] J. Carcione,et al. Computational poroelasticity — A review , 2010 .
[36] M. Lebedev,et al. Seismic wave attenuation and dispersion resulting from wave-induced flow in porous rocks — A review , 2010 .
[37] Vadim Lisitsa,et al. Lebedev scheme for the numerical simulation of wave propagation in 3D anisotropic elasticity ‡ , 2010 .
[38] Jean-Jacques Marigo,et al. 2-D non-periodic homogenization to upscale elastic media for P–SV waves , 2010 .
[39] V. Tcheverda,et al. On the interface error analysis for finite difference wave simulation , 2010 .
[40] Chaoshui Xu,et al. A new computer code for discrete fracture network modelling , 2010, Comput. Geosci..
[41] Michael Dumbser,et al. Discontinuous Galerkin methods for wave propagation in poroelastic media , 2008 .
[42] V. Vavryčuk. Velocity, attenuation, and quality factor in anisotropic viscoelastic media: A perturbation approach , 2008 .
[43] D. Makarynska,et al. Modeling elastic wave velocities and attenuation in rocks saturated with heavy oil , 2008 .
[44] Nam H. Tran,et al. Simulated annealing technique in discrete fracture network inversion: optimizing the optimization , 2007 .
[45] Fengwen Wang,et al. Using strain energy-based prediction of effective elastic properties in topology optimization of material microstructures , 2007 .
[46] Mark Kachanov,et al. Effective elasticity of rocks with closely spaced and intersecting cracks , 2006 .
[47] José M. Carcione,et al. P-wave seismic attenuation by slow-wave diffusion: Effects of inhomogeneous rock properties , 2006 .
[48] Gianluca Iaccarino,et al. IMMERSED BOUNDARY METHODS , 2005 .
[49] J. Kristek,et al. 3D Heterogeneous Staggered-grid Finite-difference Modeling of Seismic Motion with Volume Harmonic and Arithmetic Averaging of Elastic Moduli and Densities , 2002 .
[50] A. A. Samarskii,et al. The Theory of Difference Schemes , 2001 .
[51] J. Carcione,et al. A rheological model for anelastic anisotropic media with applications to seismic wave propagation , 1994 .
[52] Francis Muir,et al. A calculus for finely layered anisotropic media , 1989 .
[53] A. Levander. Fourth-order finite-difference P-SV seismograms , 1988 .
[54] J. Virieux. P-SV wave propagation in heterogeneous media: Velocity‐stress finite‐difference method , 1986 .
[55] J. Hudson. Overall properties of a cracked solid , 1980, Mathematical Proceedings of the Cambridge Philosophical Society.
[56] G. Backus. Long-Wave Elastic Anisotropy Produced by Horizontal Layering , 1962 .
[57] M. Biot. Theory of Propagation of Elastic Waves in a Fluid‐Saturated Porous Solid. I. Low‐Frequency Range , 1956 .
[58] M. Biot. Theory of Propagation of Elastic Waves in a Fluid-Saturated Porous Solid. II. Higher Frequency Range , 1956 .
[59] Tapan Mukerji,et al. Digital rock physics benchmarks - part II: Computing effective properties , 2013, Comput. Geosci..
[60] Holger Steeb,et al. Quasi-static finite element modeling of seismic attenuation and dispersion due to wave-induced fluid flow in poroelastic media , 2011 .
[61] B. Gurevich. Effect of fluid viscosity on elastic wave attenuation in porous rocks , 1999 .
[62] M. Schoenberg,et al. Seismic anisotropy of fractured rock , 1995 .