Reaction‐Gated Transient Permeability in Ductile Shear Zones

Journal Publication ResearchOnline@JCU
Sanislav, Ioan;Kumar, Avish;Sami, Mabrouk
Abstract

Ductile shear zones act as transient pathways for crustal fluids, yet the conditions under which their connected porosity becomes sufficient to conduct are not well constrained. We present a porosity balance in which connected porosity evolves under three competing processes: creation by creep cavitation, creation by metamorphic reaction, and thermally activated closure. The model is constrained by existing experimental data, and permeability is linked to porosity through a percolation law with a sharp threshold. Within this constrained model, creep cavitation alone produces a steady-state porosity orders of magnitude below the threshold at natural strain rates. A net reaction-driven porosity source resolves this gap, and the critical net porosity-production rate required to reach the threshold is geologically reasonable. Ductile shear-zone permeability is therefore likely transient and reaction-gated, with deformation alone unable to sustain connectivity at natural rates.

Journal

Geophysical Research Letters

Publication Name

Geophysical Research Letters

Volume

53

ISBN/ISSN

1944-8007

Edition

N/A

Issue

18

Pages Count

10

Location

N/A

Publisher

American Geophysical Union

Publisher Url

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Publisher Location

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Publish Date

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Url

N/A

Date

N/A

EISSN

N/A

DOI

10.1029/2026GL125871