Modeling shear zones in geological and planetary sciences : solid-and fluid-thermal – mechanical approaches
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[1] B. Hobbs,et al. Earthquakes in the ductile regime? , 1986 .
[2] C. Scholz. A fault in the ‘weak San Andreas’ theory , 2000, Nature.
[3] H. Van Swygenhoven. Polycrystalline materials. Grain boundaries and dislocations. , 2002, Science.
[4] D. Bercovici. Generation of plate tectonics from lithosphere–mantle flow and void–volatile self-lubrication , 1998 .
[5] K. Tiampo,et al. Nonlinear network dynamics on earthquake fault systems. , 2001, Physical review letters.
[6] A. Vauchez,et al. Continental rifting parallel to ancient collisional belts: an effect of the mechanical anisotropy of the lithospheric mantle , 2001 .
[7] T. Spohn. Orogenic volcanism caused by thermal runaways , 1980 .
[8] Alain Molinari,et al. Instability and localization of plastic flow in shear at high strain rates , 1987 .
[9] Klaus Regenauer-Lieb,et al. Positive feedback of interacting ductile faults from coupling of equation of state, rheology and thermal-mechanics , 2004 .
[10] P. Tackley. Self‐consistent generation of tectonic plates in time‐dependent, three‐dimensional mantle convection simulations 2. Strain weakening and asthenosphere , 2000 .
[11] G. Mandl,et al. Shear zones in granular material , 1977 .
[12] H. W. Wellman. The Alpine Fault, New Zealand, near Milford Sound and to the southwest , 1984, Geological Magazine.
[13] J. S. Hornafius,et al. Simple shear of southern California during Neogene time suggested by paleomagnetic declinations , 1985 .
[14] M. Shimada,et al. Lithosphere strength inferred from fracture strength of rocks at high confining pressures and temperatures , 1993 .
[15] David A. Yuen,et al. The interaction of viscous heating with grain‐size dependent rheology in the formation of localized slip zones , 1997 .
[16] J. Dieterich. Modeling of rock friction: 1. Experimental results and constitutive equations , 1979 .
[17] R. Trompert,et al. Mantle convection simulations with rheologies that generate plate-like behaviour , 1998, Nature.
[18] Alan Needleman,et al. Computational Modeling of Material Failure , 1994 .
[19] David Bercovici,et al. The generation of plate tectonics from mantle convection , 2003 .
[20] D. Yuen,et al. Weak zone formation for initiating subduction from thermo-mechanical feedback of low-temperature plasticity , 2001 .
[21] Anderson,et al. Frictional melting during the rupture of the 1994 bolivian earthquake , 1998, Science.
[22] I. F. Collins,et al. A matrix technique for constructing slip‐line field solutions to a class of plane strain plasticity problems , 1973 .
[23] F. Chester. A rheologic model for wet crust applied to strike‐slip faults , 1995 .
[24] D. Yuen,et al. Quasi-adiabatic instabilities associated with necking processes of an elasto-viscoplastic lithosphere , 2000 .
[25] W. M. Kaula,et al. Some effects of a dry crustal flow law on numerical simulations of coupled crustal deformation and mantle convection on Venus , 1995 .
[26] David Bercovici,et al. A two-phase model for compaction and damage: 3. Applications to shear localization and plate boundary formation , 2001 .
[27] P. M. Naghdi,et al. A Dynamical theory of interacting continua , 1965 .
[28] R. Borst,et al. Non-Associated Plasticity for Soils, Concrete and Rock , 1984 .
[29] T. Shawki,et al. An energy-based localization theory. I: Basic framework , 1995 .
[30] J. Petit,et al. Cutting of the European continental lithosphere: Plasticity theory applied to the present Alpine collision , 1997 .
[31] Huajian Gao,et al. Taylor-based nonlocal theory of plasticity: numerical studies of the micro-indentation experiments and crack tip fields , 2001 .
[32] S. Cloetingh,et al. Evolution of passive continental margins and initiation of subduction zones , 1982, Nature.
[33] J. Ziman. Physics of Metals , 1939, Nature.
[34] D. Kohlstedt,et al. Influence of water on plastic deformation of olivine aggregates 2. Dislocation creep regime , 2000 .
[35] A. I. Shemenda,et al. Physical modeling of slow seafloor spreading , 1994 .
[36] Klaus Regenauer-Lieb,et al. Dilatant plasticity applied to Alpine collision: ductile void growth in the intraplate area beneath the Eifel volcanic field , 1998 .
[37] P. England,et al. Role of lithospheric strength heterogeneities in the tectonics of Tibet and neighbouring regions , 1985, Nature.
[38] S. Wiemer,et al. Change in the probability for earthquakes in Southern California due to the Landers magnitude 7.3 earthquake. , 2000, Science.
[39] Petrini,et al. Lithospheric pressure–depth relationship in compressive regions of thickened crust , 2000 .
[40] C. Beaumont,et al. Mechanical model for subduction-collision tectonics of Alpine-type compressional orogens , 1996 .
[41] Masaki Ogawa,et al. Shear instability in a viscoelastic material as the cause of deep focus earthquakes , 1987 .
[42] Louis Moresi,et al. Role of faults, nonlinear rheology, and viscosity structure in generating plates from instantaneous mantle flow models , 1998 .
[43] A. Berg,et al. A thermo-mechanical model of horizontal subduction below an overriding plate , 2000 .
[44] C. Passchier,et al. The analysis of progressive deformation in rock analogues , 1993 .
[45] Viggo Tvergaard,et al. Effect of yield surface curvature and void nucleation on plastic flow localization , 1987 .
[46] D. Yuen,et al. The Initiation of Subduction: Criticality by Addition of Water? , 2001, Science.
[47] U. R. Christensen,et al. An Eulerian technique for thermomechanical modeling of lithospheric extension , 1992 .
[48] R. Heilbronner,et al. Orientation analysis of localized shear deformation in quartz fibres at the brittle–ductile transition , 1999 .
[49] D. Pollard,et al. Nucleation, growth and structural development of mylonitic shear zones in granitic rock , 1997 .
[50] R. Hill. The mathematical theory of plasticity , 1950 .
[51] D. Yuen,et al. The significance of shear heating in continental delamination , 2000 .
[52] J. Chéry,et al. A simple parameterization of strain localization in the ductile regime due to grain size reduction: A case study for olivine , 1999 .
[53] Norman A. Fleck,et al. A reformulation of strain gradient plasticity , 2001 .
[54] Laurent G. J. Montési,et al. A unified description of localization for application to large-scale tectonics , 2002 .
[55] David A. Yuen,et al. Rapid conversion of elastic energy into plastic shear heating during incipient necking of the lithosphere , 1998 .
[56] Y. Ben-Zion,et al. Accelerated Seismic Release and Related Aspects of Seismicity Patterns on Earthquake Faults , 2002 .
[57] S. Stein,et al. Global Tectonics and Space Geodesy , 1992, Science.
[58] R. Borst. Fracture in quasi-brittle materials: a review of continuum damage-based approaches , 2002 .
[59] H. Downes. Shear zones in the upper mantle—Relation between geochemical enrichment and deformation in mantle peridotites , 1990 .
[60] Elias C. Aifantis,et al. The physics of plastic deformation , 1987 .
[61] G. Schubert,et al. Shear heating instability in the earth's upper mantle , 1978 .
[62] N. O. Snider,et al. Repeating Deep Earthquakes: Evidence for Fault Reactivation at Great Depth , 2001, Science.
[63] Louis Moresi,et al. The role of mobile belts for the longevity of deep cratonic lithosphere: The Crumple Zone Model , 2000 .
[64] J. Head,et al. The timing of giant radiating dike swarm emplacement on Venus: Implications for resurfacing of the planet and its subsequent evolution , 1996 .
[65] Peter Mora,et al. Numerical simulation of earthquake faults with gouge: Toward a comprehensive explanation for the heat flow paradox , 1998 .
[66] Vladimir Lyakhovsky,et al. A rheological model of a fractured solid , 1993 .
[67] Holian,et al. Plasticity induced by shock waves in nonequilibrium molecular-dynamics simulations , 1998, Science.
[68] A. Poliakov,et al. Prediction of faulting from the theories of elasticity and plasticity: what are the limits? , 1998 .
[69] J. Weeks,et al. Effects of slip, slip rate, and shear heating on the friction of granite , 1998 .
[70] A. Vauchez,et al. Initiation and propagation of shear zones in a heterogeneous continental lithosphere , 1995 .
[71] S. Karato. Grain growth kinetics in olivine aggregates , 1989 .
[72] David Bercovici,et al. Plate generation in a simple model of lithosphere-mantle flow with dynamic self-lubrication , 1996 .
[73] Peter Molnar,et al. Slip-line field theory and large-scale continental tectonics , 1976, Nature.
[74] J. Rice. Localization of plastic deformation , 1976 .
[75] M. Handy. The energetics of steady state heterogeneous shear in mylonitic rock , 1994 .
[76] G. Hirth,et al. Transient behavior of a ductile shear zone: From laboratory experiments to postseismic creep , 2002 .
[77] Bradley Dodd,et al. Ductile fracture and ductility , 1987 .
[78] D. Kohlstedt,et al. Diffusion of Hydrogen and Intrinsic Point Defects in Olivine , 1998 .
[79] I. Gruntfest,et al. Thermal Feedback in Liquid Flow; Plane Shear at Constant Stress , 1963 .
[80] R. Madariaga,et al. Numerical modeling of intraplate deformation: Simple mechanical models of continental collision , 1982 .
[81] A. Munjiza,et al. Mesh size sensitivity of the combined FEM/DEM fracture and fragmentation algorithms , 2002 .
[82] R. D. Venter,et al. Plane-Strain Slip-Line Fields for Metal-Deformation Processes , 1982 .
[83] Paul Ludwik,et al. Elemente der technologischen Mechanik , 1909 .
[84] P. England,et al. A thin viscous sheet model for continental deformation , 1982 .
[85] K. Regenauer‐Lieb,et al. Geochemistry and heat transfer processes in Quaternary rhyolitic systems of The Taupo Volcanic Zone, New Zealand , 1993 .
[86] G. Schubert,et al. Shear deformation zones along major transform faults and subducting slabs , 1978 .
[87] L. Jolivet,et al. A thermomechanical model of exhumation of high pressure (HP) and ultra-high pressure (UHP) metamorphic rocks in Alpine-type collision belts , 2001 .
[88] B. Hallet,et al. Unstable extension of the lithosphere: A mechanical model for basin-and-range structure , 1983 .
[89] W. Nix,et al. Modeling Plasticity at the Micrometer Scale , 1999, Naturwissenschaften.
[90] G. Schubert,et al. Oceanic lithosphere and asthenosphere - Thermal and mechanical structure , 1976 .
[91] A. Chrysochoos,et al. Thermographic analysis of thermomechanical couplings , 1992 .
[92] P. Bird. Testing hypotheses on plate‐driving mechanisms with global lithosphere models including topography, thermal structure, and faults , 1998 .
[93] Mechanisms of CO2 separation by microporous crystals estimated by computational chemistry , 1995 .
[94] B. Hobbs,et al. Plastic instabilities: Implications for the origin of intermediate and deep focus earthquakes , 1988 .
[95] K. Aki,et al. Fractal geometry in the San Andreas Fault System , 1987 .
[96] Charles A. Williams,et al. A rheologically layered three‐dimensional model of the San Andreas Fault in central and southern California , 1991 .
[97] P. Tackley. Self-consistent generation of tectonic plates in three-dimensional mantle convection , 1998 .
[98] J. Chéry,et al. Thermomechanical evolution of a thinned continental lithosphere under compression: Implications for the Pyrenees , 1991 .
[99] B. Evans. The effect of temperature and impurity content on indentation hardness of quartz , 1984 .
[100] J. Petit,et al. `Crack–seal', slip: a new fault valve mechanism? , 1999 .
[101] D. Yuen,et al. Fast mechanisms for the formation of new plate boundaries , 2000 .
[102] Paul J. Tackley,et al. Self‐consistent generation of tectonic plates in time‐dependent, three‐dimensional mantle convection simulations , 2000 .
[103] T. Shawki. An Energy Criterion for the Onset of Shear Localization in Thermal Viscoplastic Materials, Part I: Necessary and Sufficient Initiation Conditions , 1994 .
[104] A. I. Shemenda,et al. Physical modelling of lithosphere subduction in collision zones , 1992 .
[105] D. Giardini,et al. The dynamics of back‐arc extension: an experimental approach to the opening of the Tyrrhenian Sea , 1996 .
[106] Andrew J. Dombard,et al. A test of the validity of yield strength envelopes with an elastoviscoplastic finite element model , 2000 .
[107] Jerome A. Treiman,et al. Near-Field Investigations of the Landers Earthquake Sequence, April to July 1992 , 1993, Science.
[108] Wing Kam Liu,et al. Numerical simulations of strain localization in inelastic solids using mesh‐free methods , 2000 .
[109] B. Evans,et al. Stress and temperature in the bending lithosphere as constrained by experimental rock mechanics , 1979 .
[110] A. Poliakov,et al. Lithosphere folding: Primary response to compression? (from central Asia to Paris basin) , 1999 .
[111] D. Giardini,et al. Episodic Back-arc extension during restricted mantle convection in the Central Mediterranean , 2001 .
[112] N. Kato. Effect of frictional heating on pre-seismic sliding: a numerical simulation using a rate-, state- and temperature-dependent friction law , 2001 .
[113] M. Ashby,et al. Micromechanisms of flow and fracture, and their relevance to the rheology of the upper mantle , 1978, Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences.
[114] A. Marotta,et al. The stress field below the NE German Basin: effects induced by the Alpine collision , 2001 .
[115] T. Kohl,et al. Water solubility and diffusivity in olivine: its role in planetary tectonics , 2003, Mineralogical Magazine.
[116] P. Bird. Formation of the Rocky Mountains, Western United States: A Continuum Computer Model , 1988, Science.
[117] K. S. Wallace,et al. Tectonic motions in California inferred from Very Long Baseline Interferometry observations, 1980–1984 , 1986 .
[118] H. Kanamori,et al. The 1992 Landers earthquake sequence: Earthquake occurrence and structural heterogeneities , 1993 .
[119] Giorgio Ranalli,et al. Rheology of the earth , 1987 .
[120] N. Kusznir. Lithosphere response to externally and internally derived stresses: a viscoelastic stress guide with amplification , 1982 .
[121] Louis Moresi,et al. Mantle convection with a brittle lithosphere: thoughts on the global tectonic styles of the Earth and Venus , 1998 .
[122] T. Shawki,et al. An energy-based localization theory: II. Effects of the diffusion, inertia, and dissipation numbers , 1995 .
[123] D. Yuen,et al. Rheological structure and deformation of subducted slabs in the mantle transition zone: implications for mantle circulation and deep earthquakes , 2001 .
[124] J. Dieterich. Earthquake nucleation on faults with rate-and state-dependent strength , 1992 .
[125] H. Rogers. Adiabatic Plastic Deformation , 1979 .
[126] V. Bulatov,et al. Connecting atomistic and mesoscale simulations of crystal plasticity , 1998, Nature.
[127] P. Bauer,et al. Strain localization and fluid pathways in mylonite: inferences from in situ deformation of a water-bearing quartz analogue (norcamphor) , 2000 .
[128] Fractal analysis of fault systems in Japan and the Philippines , 1992 .
[129] Bernard Howard Lavenda,et al. Thermodynamics of Irreversible Processes , 1978 .
[130] M. Gurnis,et al. Cretaceous vertical motion of australia and the australian- antarctic discordance , 1998, Science.
[131] E. Parmentier,et al. Influence of grain size evolution on convective instability , 2003 .
[132] J. Petit,et al. Mechanics of cataclastic ‘deformation band’ faulting in high-porosity sandstone, Provence , 2000 .
[133] Y. Ben‐Zion,et al. Distributed damage, faulting, and friction , 1997 .
[134] Hans Jürgen Herrmann,et al. Self‐organized criticality of plastic shear bands in rocks , 1994 .
[135] Alan Needleman,et al. Finite element analyses of shear localization in rate and temperature dependent solids , 1986 .
[136] V. Solomatov. Grain size-dependent viscosity convection and the thermal evolution of the Earth , 2001 .
[137] David Bercovici,et al. Energetics of a two-phase model of lithospheric damage, shear localization and plate-boundary formation , 2003 .
[138] P. Bird. Finite element modeling of lithosphere deformation: The Zagros collision orogeny , 1978 .
[139] Yehuda Ben-Zion,et al. Earthquake cycle, fault zones, and seismicity patterns in a rheologically layered lithosphere , 2001 .
[140] C. Beaumont,et al. Geodynamic models of crustal‐scale episodic tectonic accretion and underplating in subduction zones , 1999 .
[141] B. Evans,et al. The temperature variation of hardness of olivine and its implication for polycrystalline yield stress , 1979 .
[142] Viggo Tvergaard,et al. Analyses of Plastic Flow Localization in Metals , 1992 .
[143] J. Brune,et al. Melting on Fault Planes During Large Earthquakes , 1972 .
[144] K. Pitzer,et al. EQUATIONS OF STATE VALID CONTINUOUSLY FROM ZERO TO EXTREME PRESSURES FOR H2O AND CO2 , 1994 .
[145] G. Schubert,et al. A two-phase model for compaction and damage: 2. Applications to compaction, deformation, and the role of interfacial surface tension , 2001 .
[146] N. Kusznir,et al. Ductile shear zones: some aspects of constant slip velocity and constant shear stress models , 1982 .
[147] David A. Yuen,et al. Modelling of viscoelastic plume-lithosphere interaction using the adaptive multilevel wavelet collocation method , 2001 .
[148] J. Monaghan. Smoothed particle hydrodynamics , 2005 .
[149] A. Chrysochoos,et al. Modélisation numérique des couplages en thermomécanique des solides , 1997 .
[150] P. Bird,et al. Thin‐shell modeling of neotectonics in the Azores‐Gibraltar Region , 2001 .
[151] L. Kubin,et al. Statistical and multifractal analysis of the Portevin–Le Chatelier effect , 2001 .
[152] K. Regenauer‐Lieb,et al. Heat generation associated with collision of two plates: the Himalayan geothermal belt , 1998 .
[153] R. Weinberger,et al. Non-linear elastic behaviour of damaged rocks , 1997 .
[154] J. Rice,et al. CONDITIONS FOR THE LOCALIZATION OF DEFORMATION IN PRESSURE-SENSITIVE DILATANT MATERIALS , 1975 .
[155] S. Karato,et al. Mechanisms of shear localization in the continental lithosphere: inference from the deformation microstructures of peridotites from the Ivrea zone, northwestern Italy , 1998 .
[156] A. Tarantola,et al. A logarithmic equation of state , 1998 .
[157] E. Orowan,et al. Chapter 12: Mechanism of Seismic Faulting , 1960 .
[158] James H. Dieterich,et al. Modeling of rock friction: 2. Simulation of preseismic slip , 1979 .
[159] T. Tullis. Deep Slip Rates on the San Andreas Fault , 1999, Science.
[160] D. Yuen,et al. Fast ductile failure of passive margins from sediment loading , 2000 .
[161] N. Beeler,et al. On rate-state and Coulomb failure models , 2000 .
[162] Y. Ben‐Zion,et al. Characterization of Fault Zones , 2003 .
[163] T. Shawki. An Energy Criterion for the Onset of Shear Localization in Thermal Viscoplastic Materials, Part II: Applications and Implications , 1994 .
[164] O. Zienkiewicz,et al. Numerical study of continental collision: influence of buoyancy forces and an initial stiff inclusion , 1986 .
[165] G. Schubert,et al. Asthenospheric shear flow: Thermally stable or unstable? , 1977 .
[166] C. Beaumont,et al. Asymmetric lithospheric extension: The role of frictional plastic strain softening inferred from numerical experiments , 2002 .
[167] C. Froidevaux,et al. Thermal and mechanical evolution of shear zones , 1980 .
[168] Extension of the Lattice Solid Model to Incorporate Temperature Related Effects , 2000 .
[169] David Bercovici,et al. A Simple Model of Plate Generation from Mantle Flow , 1993 .
[170] T. Tanimoto,et al. Change of crustal potential energy by earthquakes: An indicator for extensional and compressional tectonics , 2000 .
[171] S. Karato,et al. Effects of water on dynamically recrystallized grain-size of olivine , 2001 .
[172] N. Sleep,et al. Magmatism and extension: The thermal and mechanical effects of the Yellowstone Hotspot , 1992 .
[173] C. Beaumont,et al. The continental collision zone, South Island, New Zealand: Comparison of geodynamical models and observations , 1996 .
[174] C. Froidevaux,et al. Stretching instabilities and lithospheric boudinage , 1986 .
[175] S. Balachandar,et al. Viscous Dissipation in Three-Dimensional Convection with Temperature-Dependent Viscosity , 1995, Science.
[176] H. Melosh. Plate motion and thermal instability in the asthenosphere , 1976 .
[177] R. L. Post. High-temperature creep of Mt. Burnet Dunite , 1977 .
[178] D. Yuen,et al. Thermal-mechanical effects of low-temperature plasticity (the Peierls mechanism) on the deformation of a viscoelastic shear zone , 1999 .
[179] B. Evans,et al. Strength of the lithosphere: Constraints imposed by laboratory experiments , 1995 .
[180] Peter Molnar,et al. Active faulting and tectonics in China , 1977 .
[181] John F Nye,et al. The flow law of ice from measurements in glacier tunnels, laboratory experiments and the Jungfraufirn borehole experiment , 1953, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[182] David Bercovici,et al. A two‐phase model for compaction and damage: 1. General Theory , 2001 .