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Wiley InterScience

Geofluids

Geofluids

Volume 8 Issue 2, Pages 128 - 139

Published Online: 20 May 2008

© 2009 Blackwell Publishing Ltd (a Blackwell Publishing Company)



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Permeability of continental crust influenced by internal and external forcing
S. A. ROJSTACZER 1 , S. E. INGEBRITSEN 2 AND D. O. HAYBA 3
  1 Palo Alto, CA ;   2 U.S. Geological Survey, Menlo Park, CA ;   3 U.S. Geological Survey, Reston, VA, USA
Correspondence to Steven Ingebritsen, U.S. Geological Survey, Menlo Park, CA, USA. Email: seingebr@usgs.gov. Tel: +1 650 329 4422. Fax: +1 650 329 4463.
Copyright Journal compilation © 2008 Blackwell Publishing Ltd (a Blackwell Publishing Company)
KEYWORDS
geothermal • groundwater • metamorphic • numerical modeling • permeability

ABSTRACT

The permeability of continental crust is so highly variable that it is often considered to defy systematic characterization. However, despite this variability, some order has been gleaned from globally compiled data. What accounts for the apparent coherence of mean permeability in the continental crust (and permeability–depth relations) on a very large scale? Here we argue that large-scale crustal permeability adjusts to accommodate rates of internal and external forcing. In the deeper crust, internal forcing – fluxes induced by metamorphism, magmatism, and mantle degassing – is dominant, whereas in the shallow crust, external forcing – the vigor of the hydrologic cycle – is a primary control. Crustal petrologists have long recognized the likelihood of a causal relation between fluid flux and permeability in the deep, ductile crust, where fluid pressures are typically near-lithostatic. It is less obvious that such a relation should pertain in the relatively cool, brittle upper crust, where near-hydrostatic fluid pressures are the norm. We use first-order calculations and numerical modeling to explore the hypothesis that upper-crustal permeability is influenced by the magnitude of external fluid sources, much as lower-crustal permeability is influenced by the magnitude of internal fluid sources. We compare model-generated permeability structures with various observations of crustal permeability.


Received 25 January 2008; accepted 17 April 2008

DIGITAL OBJECT IDENTIFIER (DOI)
10.1111/j.1468-8123.2008.00211.x About DOI

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