Devolatilization‐generated fluid pressure and deformation‐propagated fluid flow during prograde regional metamorphism
- 10 August 1997
- journal article
- Published by American Geophysical Union (AGU) in Journal of Geophysical Research
- Vol. 102 (B8) , 18149-18173
- https://doi.org/10.1029/97jb00731
Abstract
The obstruction to fluid flow formed by the rocks overlying a metamorphic devolatilization front causes the fluid pressure gradient in the reacting rocks to diverge from lithostatic. This drives deformation in tandem with the fluid pressure anomaly generated by the volume change of the reaction. Numerical simulations show that once the vertical extent of the reacted rocks is comparable to the compaction length, compaction processes caused by the difference between confining and fluid pressure gradients generate a positive fluid pressure anomaly (effective pressure 15 MPa s. Continuous upward strengthening of the crust increases the wavelength and amplitude of the fluid pressure waves and thereby the likelihood of hydrofracture. Order of magnitude strength contrasts are adequate to arrest wave propagation, forming water sills that become increasingly stable in the absence of deviatoric stress. Although the fluid pressure gradient within a wave may be near hydrostatic, Rayleigh convection is unlikely. Thus, in the absence of lateral perturbations, fluid flow is upward and episodic, despite continuity of devolatilization. Porosity waves provide a mechanism for temporal focusing of metamorphic fluid fluxes with the potential to increase the efficacy of heat and mass transport.Keywords
This publication has 86 references indexed in Scilit:
- A flow law for dislocation creep of quartz aggregates determined with the molten salt cellPublished by Elsevier ,2000
- Magma migration and magmatic solitary waves in 3‐DGeophysical Research Letters, 1995
- A unified approach to geopressuring, low‐permeability zone formation, and secondary porosity generation in sedimentary basinsJournal of Geophysical Research, 1994
- Lower crustal flow in an extensional setting: Constraints from the Halloran Hills region, eastern Mojave Desert, CaliforniaJournal of Geophysical Research, 1994
- Porosity and permeability evolution during hot isostatic pressing of calcite aggregatesJournal of Geophysical Research, 1994
- Fluid overpressures and pressure solution in the crustTectonophysics, 1993
- Quartzite rheology under geological conditionsGeological Society, London, Special Publications, 1990
- Tectonically driven fluid flow in the Kodiak accretionary complex, AlaskaGeology, 1987
- Magma solitonsGeophysical Research Letters, 1984
- Grid generation techniques in computational fluid dynamicsAIAA Journal, 1984