Petrological constraints on the eclogite‐ and blueschistfacies metamorphism and P‐T‐t paths in the Western Alps*
- 1 January 1991
- journal article
- Published by Wiley in Journal of Metamorphic Geology
- Vol. 9 (1) , 5-17
- https://doi.org/10.1111/j.1525-1314.1991.tb00501.x
Abstract
Phase relationships in the model mafic system and geothermobarometry allow discrimination of four main groups of high‐P rocks in the nappes of the Western Alps: very high‐P eclogite‐facies (including kyanite eclogites and coesite‐pyrope assemblages), eclogite‐facies (paragonite‐zoisite eclogites), high‐T blueschist‐facies (glaucophane‐garnet ± lawsonite assemblages) and low‐T blueschist‐facies (glaucophane‐lawsonite ± pumpellyite assemblages). The blueschist‐facies‐eclogite‐facies transition is promoted chiefly by increasing T, low bulk XMg and relatively low μH2O. The variety of assemblages and the heterogeneous approach to equilibrium observed in the Alpine rocks are not only constrained by the intersection of the reaction surfaces in P‐T‐X space, but also by the effect and timing of the processes which control kinetics (i.e. pervasive deformation and fluid infiltration). The faster rate of dehydration reactions relative to hydration reactions along with the fact that different bulk compositions crossed the reaction curves at different temperatures (and times), all may have induced μH2O gradients and contributed to the heterogeneous distribution of deformation through a process of reaction‐enhanced ductility. Also mass‐transfer may have been an effective process in determining the type of high‐P assemblage in particular rock volumes.As regards the P‐T‐t paths, only the post‐climax histories are recorded well in the Alpine nappes. Post‐eclogitic exhumation paths at decreasing temperatures characterize structurally higher nappes which were first subducted during the early‐Alpine (Cretaceous) event. In contrast, more or less isothermal decompression paths characterize structurally deeper nappes formed by westward propagation of the underthrust surfaces during the early‐Alpine event and the subsequent meso‐Alpine (Palaeogene) collision between the ‘European’and ‘African’plates. In the Western Alps, prevalent eclogite‐facies conditions were attained during the metamorphic climax of the early‐Alpine subduction, while blueschist‐facies recrystallization characterizes the early‐Alpine exhumation of the eclogitized units and the subsequent intracontinental underthrusts linked to the meso‐Alpine continental collision.Keywords
This publication has 52 references indexed in Scilit:
- Tectonic implications of lawsonite formation in the Sesia zone (Western Alps)Tectonophysics, 1989
- Eclogites in the Northern Dora-Maira Nappe (Western Alps, Italy)Tschermaks Mineralogische und Petrographische Mitteilungen, 1989
- New constraints for the timing of the Alpine metamorphism in the internal ophiolitic nappes from the Western Alps as inferred from fission-track dataTectonophysics, 1986
- Structural history of high-pressure metamorphic rocks in the southern vanoise massif, french alps, and their relation to alpine tectonic eventsJournal of Structural Geology, 1985
- A Thermal-Tectonic Model for High-Pressure Metamorphism and Deformation in the Sesia Zone, Western AlpsThe Journal of Geology, 1984
- Reaction-enhanced ductility: The role of solid-solid univariant reactions in deformation of the crust and mantleTectonophysics, 1983
- Deformation and metamorphism in the Bard area of the Sesia Lanzo Zone, Western Alps, during subduction and upliftJournal of Metamorphic Geology, 1983
- The experimental determination of activities in disordered and short-range ordered jadeitic pyroxenesContributions to Mineralogy and Petrology, 1983
- FeMg partitioning between coexisting garnet and phengite at high pressure, and comments on a garnet-phengite geothermometerLithos, 1982
- Geochemical and K-Ar isotopic behaviour of alpine sheet silicates during polyphased deformationTectonophysics, 1981