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Geometric scale invariance, genesis, and self-organization of polygonal fracture networks in granitic rocks

Publication ,  Journal Article
Riley, P; Murray, AB; Tikoff, B
Published in: Journal of Structural Geology
September 1, 2012

We documented polygonal fracture networks in the Tuolumne Intrusive Suite, Sierra Nevada Batholith by collecting data on the size, orientation, and length of fractures and fracture-bound polygons in nearly isotropic granitic rocks. Polygonal fracture networks are constrained to sheets of rock sub-parallel to the underlying rock, with the sheets bound above and below by fractures (i.e., free surfaces). Data indicate that most geometric characteristics of the polygonal fracture networks are scale-invariant; large (m-scale) networks exhibit the same geometry as small (cm-scale) networks. A linear correlation exists between sheet thickness and average polygon size. Polygons within the networks are anisotropic, with the degree of anisotropy correlated with the degree of sheet curvature. The preferred orientation of the polygons correlates with the inclination of the sheet, with long axes of polygons parallel to sheet strike. Based on geometry, we suggest that the polygonal fracture networks in granitic rocks observed in this study formed from temperature fluctuations that caused thermal expansion and contraction in the rock. Repeated cycles of expansion/contraction led to the initiation and propagation of fractures within the network. We propose that the observed fracture patterns are not a product of extrinsic conditions but rather a product of interactions between fractures, implying that the polygonal fracture networks are self-organizing systems. © 2012 Elsevier Ltd.

Duke Scholars

Published In

Journal of Structural Geology

DOI

ISSN

0191-8141

Publication Date

September 1, 2012

Volume

42

Start / End Page

34 / 48

Related Subject Headings

  • Geochemistry & Geophysics
  • 3705 Geology
  • 0403 Geology
 

Citation

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Riley, P., Murray, A. B., & Tikoff, B. (2012). Geometric scale invariance, genesis, and self-organization of polygonal fracture networks in granitic rocks. Journal of Structural Geology, 42, 34–48. https://doi.org/10.1016/j.jsg.2012.07.001
Riley, P., A. B. Murray, and B. Tikoff. “Geometric scale invariance, genesis, and self-organization of polygonal fracture networks in granitic rocks.” Journal of Structural Geology 42 (September 1, 2012): 34–48. https://doi.org/10.1016/j.jsg.2012.07.001.
Riley P, Murray AB, Tikoff B. Geometric scale invariance, genesis, and self-organization of polygonal fracture networks in granitic rocks. Journal of Structural Geology. 2012 Sep 1;42:34–48.
Riley, P., et al. “Geometric scale invariance, genesis, and self-organization of polygonal fracture networks in granitic rocks.” Journal of Structural Geology, vol. 42, Sept. 2012, pp. 34–48. Scopus, doi:10.1016/j.jsg.2012.07.001.
Riley P, Murray AB, Tikoff B. Geometric scale invariance, genesis, and self-organization of polygonal fracture networks in granitic rocks. Journal of Structural Geology. 2012 Sep 1;42:34–48.
Journal cover image

Published In

Journal of Structural Geology

DOI

ISSN

0191-8141

Publication Date

September 1, 2012

Volume

42

Start / End Page

34 / 48

Related Subject Headings

  • Geochemistry & Geophysics
  • 3705 Geology
  • 0403 Geology