Thermodynamic Modeling of Crustal Melting Using Xenolith Analogs from the Cortlandt Complex, New York, USA
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[1] C. Clark,et al. Hot orogens and supercontinent amalgamation: A Gondwanan example from southern India , 2015 .
[2] R. Pankhurst,et al. The evolution of a mid-crustal thermal aureole at Cerro Toro, Sierra de Famatina, NW Argentina , 2014 .
[3] M. Caddick,et al. Late‐stage orogenic loading revealed by contact metamorphism in the northern Appalachians, New York , 2014 .
[4] H. Marschall,et al. Diffusion-induced fractionation of niobium and tantalum during continental crust formation , 2013 .
[5] J. Ague,et al. Pressure–temperature evolution and thermal regimes in the Barrovian zones, Scotland , 2011, Journal of the Geological Society.
[6] M. Brown,et al. A year in the life of an aluminous metapelite xenolith—The role of heating rates, reaction overstep, H2O retention and melt loss , 2011 .
[7] A. Galli,et al. Granulites and charnockites of the Gruf Complex: Evidence for Permian ultra-high temperature metamorphism in the Central Alps , 2011 .
[8] J. Díaz-Alvarado,et al. Assessing Bulk Assimilation in Cordierite-bearing Granitoids from the Central System Batholith, Spain; Experimental, Geochemical and Geochronological Constraints , 2011 .
[9] D. Viete,et al. The nature and origin of the Barrovian metamorphism, Scotland: diffusion length scales in garnet and inferred thermal time scales , 2011, Journal of the Geological Society.
[10] M. Caddick,et al. Preservation of Garnet Growth Zoning and the Duration of Prograde Metamorphism , 2010 .
[11] R. Powell,et al. The stability of sapphirine + quartz: calculated phase equilibria in FeO–MgO–Al2O3–SiO2–TiO2–O , 2010 .
[12] J. Ague,et al. Modeling metamorphism in collisional orogens intruded by magmas: II. Fluid flow and implications for Barrovian and Buchan metamorphism, Scotland , 2010, American Journal of Science.
[13] M. Brown,et al. Petrogenetic modelling of strongly residual metapelitic xenoliths within the southern Platreef, Bushveld Complex, South Africa , 2010 .
[14] R. Tracy. High Pressure Crystallization of Mafic Magma: Field Observations, Compositional Measurements and Computer Modeling , 2009 .
[15] D. Dingwell,et al. Viscosity of magmatic liquids: A model , 2008 .
[16] R. Powell,et al. On thermobarometry , 2008 .
[17] J. Ague,et al. Brief thermal pulses during mountain building recorded by Sr diffusion in apatite and multicomponent diffusion in garnet , 2007 .
[18] R. Powell,et al. Progress relating to calculation of partial melting equilibria for metapelites , 2007 .
[19] R. Sparks,et al. The Genesis of Intermediate and Silicic Magmas in Deep Crustal Hot Zones , 2006 .
[20] R. Powell,et al. An in situ metatexite–diatexite transition in upper amphibolite facies rocks from Broken Hill, Australia , 2005 .
[21] James A. D. Connolly,et al. Computation of phase equilibria by linear programming: A tool for geodynamic modeling and its application to subduction zone decarbonation , 2005 .
[22] G. Markl. Mullite-corundum-spinel-cordierite-plagioclase xenoliths in the Skaergaard Marginal Border Group: multi-stage interaction between metasediments and basaltic magma , 2005 .
[23] R. Powell,et al. Calculated phase equilibria in K2O‐FeO‐MgO‐Al2O3‐SiO2‐H2O for sapphirine‐quartz‐bearing mineral assemblages , 2004 .
[24] R. Powell,et al. Activity–composition relations for phases in petrological calculations: an asymmetric multicomponent formulation , 2003 .
[25] R. Sparks,et al. Effects of repetitive emplacement of basaltic intrusions on thermal evolution and melt generation in the crust , 2002 .
[26] T. Holland,et al. Mixing properties of phengitic micas and revised garnet‐phengite thermobarometers , 2002 .
[27] R. Powell,et al. The interpretation of reaction textures in Fe‐rich metapelitic granulites of the Musgrave Block, central Australia: constraints from mineral equilibria calculations in the system K2O–FeO–MgO–Al2O3–SiO2–H2O–TiO2–Fe2O3 , 2002 .
[28] N. Petford,et al. Partial melting of mafic (amphibolitic) lower crust by periodic influx of basaltic magma , 2001 .
[29] M. Brown,et al. Orogeny, migmatites and leucogranites: A review , 2001 .
[30] P. Kelemen,et al. The role of H2O during crystallization of primitive arc magmas under uppermost mantle conditions and genesis of igneous pyroxenites: an experimental study , 2001 .
[31] B. Chappell,et al. Two contrasting granite types: 25 years later , 2001 .
[32] R. Powell,et al. Calculation of partial melting equilibria in the system Na2O–CaO–K2O–FeO–MgO–Al2O3–SiO2–H2O (NCKFMASH) , 2001 .
[33] Worley,et al. The effect of TiO2 and Fe2O3 on metapelitic assemblages at greenschist and amphibolite facies conditions: mineral equilibria calculations in the system K2O–FeO–MgO–Al2O3–SiO2–H2O–TiO2–Fe2O3 , 2000 .
[34] T. Dempster,et al. The Petrology of Mullite-bearing Peraluminous Xenoliths: Implications for Contamination Processes in Basaltic Magmas , 1999 .
[35] R. Powell,et al. Relating formulations of the thermodynamics of mineral solid solutions: Activity modeling of pyroxenes, amphiboles, and micas , 1999 .
[36] Paul D. Asimow,et al. Algorithmic modifications extending MELTS to calculate subsolidus phase relations , 1998 .
[37] A. Johnson. Textural and Chemical Relations Among Spinel-Sapphirine-Garnet-Orthopyroxene, Salt Hill Emery Mine, Cortlandt Complex, N.Y. , 1998 .
[38] R. Powell,et al. Calculating phase diagrams involving solid solutions via non‐linear equations, with examples using THERMOCALC , 1998 .
[39] Roger Powell,et al. An internally consistent thermodynamic data set for phases of petrological interest , 1998 .
[40] S. Barnes,et al. The influence of country-rock assimilation and silicate to sulfide ratios (R factor) on the genesis of the Dunka Road Cu – Ni – platinum-group element deposit, Duluth Complex, Minnesota , 1997 .
[41] J. Beard,et al. Dehydration-melting of Biotite Gneiss and Quartz Amphibolite from 3 to 15 kbar , 1995 .
[42] Mark S. Ghiorso,et al. Chemical mass transfer in magmatic processes IV. A revised and internally consistent thermodynamic model for the interpolation and extrapolation of liquid-solid equilibria in magmatic systems at elevated temperatures and pressures , 1995 .
[43] R. Powell,et al. Optimal geothermometry and geobarometry , 1994 .
[44] J. Peterson,et al. Experimental biotite-quartz melting in the KMASH-CO 2 system and the role of CO 2 in the petrogenesis of granites and related rocks , 1990 .
[45] D. Demaiffe,et al. Monzonorites from Rogaland (Southwest Norway): a series of rocks coeval but not comagmatic with massif-type anorthosites , 1989 .
[46] M. Fuhrman,et al. Ternary-feldspar modeling and thermometry , 1988 .
[47] R. Powell,et al. An internally consistent dataset with uncertainties and correlations: 3. Applications to geobarometry, worked examples and a computer program , 1988 .
[48] W. Leeman,et al. Petrogenesis of Mount St. HElens dacitic magmas , 1987 .
[49] B. Mysen,et al. Volatiles in silicate melts at high pressure and temperature , 1986 .
[50] R. Sparks,et al. Thermal and mechanical constraints on mixing between mafic and silicic magmas , 1986 .
[51] D. Hamilton,et al. Solubility of Water in Albite-Melt Determined by the Weight-Loss Method , 1986, The Journal of Geology.
[52] A. Basu,et al. Age and origin of the Cortlandt Complex, New York: Implications from Sm-Nd data , 1982 .
[53] R. Armstrong,et al. Emplacement history and tectonic significance of the Cortlandt Complex, related plutons, and dike swarms in the Taconide Zone of southeastern New York based on K-Ar and Rb-Sr investigations , 1982 .
[54] B. Wood,et al. Thermodynamics of water in cordierite and some petrologic consequences of cordierite as a hydrous phase , 1979 .
[55] S. Morse,et al. Occurrence of sapphirine plus quartz at Peekskill, New York , 1978 .
[56] F. Seifert,et al. Instability of sapphirine at high pressures , 1975 .
[57] R. Maury,et al. Melting of acid xenoliths into a basanite: An approach to the possible mechanisms of crustal contamination , 1974 .
[58] P. Wyllie,et al. Melting relations of muscovite-granite to 35 kbar as a model for fusion of metamorphosed subducted oceanic sediments , 1973 .
[59] R. C. Newton. An Experimental Determination of the High-Pressure Stability Limits of Magnesian Cordierite under Wet and Dry Conditions , 1972, The Journal of Geology.
[60] P. Wyllie,et al. Phase relationships in the system NaAlSiO 4 -SiO 2 -H 2 O to 35 kilobars pressure , 1969 .
[61] F. Barker. Reaction between mafic magmas and pelitic schist, Cortlandt, New York , 1964 .
[62] G. Friedman. The Spinel-Silica Reaction Succession: A Study of Incompatible Mineral Phases , 1954, The Journal of Geology.
[63] R. W. Goranson. Silicate‐water systems: The solubility of water in albite‐melt , 1936 .
[64] G. Rogers. GEOLOGY OF THE CORTLANDT SERIES AND ITS EMERY DEPOSITS , 1912 .
[65] J. Dana. Geological relations of the limestone belts of Westchester County, New York , 1880, American Journal of Science.
[66] M. Wingate,et al. Proterozoic granulite formation driven by mafic magmatism: An example from the Fraser Range Metamorphics, Western Australia , 2014 .
[67] G. Wörner,et al. Hybrids, magma mixing and enriched mantle melts in post-collisional Variscan granitoids: the Rastenberg Pluton, Austria , 2000, Geological Society, London, Special Publications.
[68] O. Oncken,et al. Orogenic processes: quantification and modelling in the Variscan belt , 2000, Geological Society, London, Special Publications.
[69] E. Mclellan,et al. A Natural Example of the Kinetic Controls of Compositional and Textural Equilibration , 1985 .
[70] C. Hawkesworth,et al. A geochemical traverse across the North Chilean Andes: evidence for crust generation from the mantle wedge , 1985 .
[71] G. Hanson,et al. Cortlandt Complex; differentiation and contamination in plutons of alkali basalt affinity , 1984 .
[72] S. Morse,et al. Igneous petrology , 1980, Nature.
[73] C. Burnham,et al. The role of H 2 O in silicate melts; I, P-V-T relations in the system NaAlSi 3 O 8 -H 2 O to 10 kilobars and 1000 degrees C , 1971 .
[74] D. Green,et al. Experimental study of the stability of cordierite and garnet in pelitic compositions at high pressures and temperatures , 1971 .
[75] D. Green,et al. Experimental study of the stability of cordierite and garnet in pelitic compositions at high pressures and temperatures , 1971 .
[76] D. Green,et al. Experimental data on coexisting cordierite and garnet under high grade metamorphic conditions , 1970 .
[77] John Crank,et al. The Mathematics Of Diffusion , 1956 .
[78] A. H.. The Evolution of the Igneous Rocks , 2022, Nature.