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Foliations and shear sense: A modern approach to an old problem

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Journal of the Geological Society of India

Abstract

Argument about shear on foliations began in the mid 19th century and continues to the present day. It results from varying interpretations of what takes place during the development of different types of foliations ranging from slaty cleavages through differentiated crenulation cleavages, schistosity and gneissosity to mylonites. Computer modelling, quantitative microstructural work and monazite dating have provided a unique solution through access to the history of foliation development preserved by porphyroblasts. All foliations involve shear in their development and most can be used to derive a shear sense. The shear sense obtained is consistent between foliation types and accords with recent computer modelling of these structures preserved within porphyroblasts relative to those in the matrix. The asymmetry of curving foliation into a locally developing new one allows determination of the shear sense along the latter foliation in most rocks. The problem of shear on fold limbs and parallelism of foliation and the flattening plane of the strain ellipse is resolved through the partitioning of shearing and shortening components of deformation into zones that anastomose around ellipsoidal domains lying parallel to the XY plane. Conflicts in shear sense occur if multiple reuse or reactivation of foliations is not recognized and allowed for but are readily resolved if taken into account.

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References

  • Aerden, D.G.A.M. (1994) Kinematics of orogenic collapse in the Variscan Pyrenees deduced from microstructures in porphyroblastic rocks from the Lys-Caillaouas massif. Tectonophysics, v.238, pp.139–160.

    Article  Google Scholar 

  • Aerden, D.G.A.M. (1998) Tectonic evolution of the Montagne Noire and a possible orogenic model for syn-collisional exhumation of deep rocks, Hercynian belt, France. Tectonics, v.17, pp.62–79.

    Article  Google Scholar 

  • Aerden, D.G.A.M. and Sayab, M. (2008) From Adria-to Africa-driven orogenesis: Evidence from porphyroblasts in the Betic Cordillera, Spain. Jourr. Struct. Geol., v.30, pp.1272–1287.

    Article  Google Scholar 

  • Ali, A. (2009) Tectono-metamorphic evolution of the Balcooma region, North Queensland, Australia. Unpublished PhD Thesis, James Cook University, 270p.

  • Becker, G. F. (1896) Schistosity and slaty cleavage. Jr. Geol., v.4, pp.429–448.

    Article  Google Scholar 

  • Becker, G. F. (1904) Experiments on schistosity and slaty cleavage. US Geol. Surv. Bull., v.241, pp.1–34.

    Google Scholar 

  • Becker, G.F. (1907) Current theories of slaty cleavage. Am. Jour. Sci., v.24, pp.1–17.

    Google Scholar 

  • Bell, T.H. (1969) The development of slaty cleavage across the NackaraArc. Unpublished honours thesis, Adelaide University 63p.

  • Bell, T.H. (1978a) Progressive deformation and reorientation of fold axes in a ductile mylonite zone, Central Australia. Tectonophysics, v.44, pp.285–320.

    Article  Google Scholar 

  • Bell, T.H. (1978b) The development of slaty cleavage across the Nackara Arc of the Adelaide Geosyncline. Tectonophysics, v.51, pp.171–201.

    Article  Google Scholar 

  • Bell, T.H. (1981) Foliation development: the contribution, geometry and significance of progressive bulk inhomogeneous shortening. Tectonophysics, v.75, pp.273–296.

    Article  Google Scholar 

  • Bell, T.H. (1985) Deformation partitioning and porphyroblast rotation in metamorphic rocks: A radical reinterpretation. Jour. Met. Geol., v.3, pp.109–118.

    Article  Google Scholar 

  • Bell, T.H. (1986) Foliation development and refraction in metamorphic rocks: reactivation of earlier foliations and decrenulation due to shifting patterns of deformation partitioning. Jour. Met. Geol., v.4, pp.421–444.

    Article  Google Scholar 

  • Bell, T.H. (2010) Deformation partitioning, foliation successions and their significance for orogenesis: hiding lengthy deformation histories in mylonites. In: R.D. Law, R.W.H. Butler, R. Holdsworth, M. Krabendam and R. Strachan (Eds.), Continental Tectonics and Mountain Building: The Legacy of Peach and Horne. Geol. Soc London Spec. Publ. (in press).

  • Bell, T.H. and Bruce, M.D. (2006) On the geometry of inclusion trails preserved within a first phase of porphyroblast growth. Jour. Struct. Geol., v.28, pp.236–252.

    Article  Google Scholar 

  • Bell, T.H. and Rubenach, M.J. (1983) Sequential porphyroblast growth and crenulation cleavage development during progressive deformation. Tectonophysics, v.92, pp.171–194.

    Article  Google Scholar 

  • Bell, T.H., Ham, A.P. and Hickey, K.A. (2003) Early formed regional antiforms and synforms that fold younger matrix schistosity: their effect on sites of mineral growth. Tectonophysics, v.367, pp.253–278.

    Article  Google Scholar 

  • Bell, T.H., Ham, A.P. and Kim, H.S. (2004) Partitioning of deformation along an orogen and its effects on porphyroblast growth during orogenesis. Jour. Struct. Geol., v.26, pp.825–845.

    Article  Google Scholar 

  • Bell, T.H., Ham, A.P., Hayward, N. and Hickey, K.A. (2005) On the development of gneiss domes. Australian Jour. Earth Sci., v.52, pp.183–204.

    Article  Google Scholar 

  • Bell, T.H. and Hickey, K.A. (1998) Multiple deformations with successive sub-vertical and sub horizontal axial planes: their impact on geometric development and significance for mineralization and exploration in the Mount Isa region. Econ. Geol., v.93, pp.1369–1389.

    Article  Google Scholar 

  • Bell, T.H. and Johnson, S.E. (1989) Porphyroblast inclusion trails: The key to orogenesis. Jourr. Met. Geol., v.7, pp.279–310.

    Article  Google Scholar 

  • Bell, T.H. and Johnson, S.E. (1992) Shear sense: a new approach that resolves problems between criteria in metamorphic rocks. Jourr. Met. Geol., v.10, pp.99–124.

    Article  Google Scholar 

  • Bell, T.H., Johnson, S.E., Davis, B., Forde, A., Hayward, N. and Wilkins, C. (1992) Porphyroblast inclusion-trail orientation data: eppure non son girate! Jour. Met. Geol., v.10, pp.295 308.

    Google Scholar 

  • Bell, T.H. and Mares, V.M. (1999) Correlating deformation and metamorphism around arcs in orogens. Am. Min., v.84, pp.1727–1740.

    Google Scholar 

  • Bell, T.H. and Newman, R. (2006) Appalachian orogenesis: the role of repeated gravitational collapse. In: R. Butler and S. Mazzoli (Eds.), Styles of Continental Compression. Geol. Soc. Amer. Spec. Papers, v.414, pp.95–118.

  • Bell, T.H. and Welch, P.W. (2002) Prolonged Acadian Orogenesis: Revelations from FIA Controlled Monazite Dating of Foliations in Porphyroblasts and Matrix. American Jour Sci., v.302, pp.549–581.

    Article  Google Scholar 

  • Berthé, D., Choukroune P. and Jegouzo, P. (1979) Orthogneiss, mylonite and non-coaxial deformation of granites: the example of the South Armorican Shear Zone. Jour. Struct. Geol., v.1, pp.31–42.

    Article  Google Scholar 

  • Cihan, M. (2004) The drawbacks of sectioning rocks relative to fabric orientations in the matrix: a case study from the Robertson River Metamorphics (Northern Queensland, Australia). Jour. Struct. Geol., v.26, pp.2157–2174.

    Article  Google Scholar 

  • Cihan, M., Evins, P., Lisowiec, N. and Blake, K. (2006) Time constraints on deformation and metamorphism from EPMA dating of monazite in the Proterozoic Robertson River Metamorphics, NE Australia. Precambrian Res., v.145, pp.1–23.

    Article  Google Scholar 

  • Cloos, E. (1947) Oolite deformation in the South Mountain Fold, Maryland. Bull. Geol. Soc. Amer., v.58, pp.843–918.

    Article  Google Scholar 

  • Cosgrove, J.W. (1976) The formation of crenulation cleavage. Jour. Geol. Soc. London, v.132, pp.155–178.

    Article  Google Scholar 

  • Davis, B.K. (1993) Mechanism of emplacement of Cannibal Creek Granite with special reference to timing and deformation history of the Aureole. Tectonophysics, v.224, pp.337–362.

    Article  Google Scholar 

  • Davis, B.K. (1995) Regional-scale foliation reactivation and reuse during formation of a macroscopic fold in the Robertson River metamorphics, north Queensland, Australia. Tectonophysics, v.242, pp.293–311.

    Article  Google Scholar 

  • Davis, B.K. and Forde, A. (1994) Regional slaty cleavage formation and fold axis rotation by re-use and reactivation of foliations: Fiery Creek Slate Belt, North Queensland. Tectonophysics, v.230, pp.161–179.

    Article  Google Scholar 

  • De Sitter, L.U. (1954) Schistosity and shear in micro- and macro folds. Geol. Mijn., v.16, pp.429–439.

    Google Scholar 

  • Durney, D.W. (1972) Solution-transfer, an important geological deformation mechanism. Nature, v.235, p.315.

    Article  Google Scholar 

  • Evans, T.P. (2004) A method for calculating effective bulk composition modification due to crystal fractionation in garnet-bearing schist: implications for isopleth thermobarometry. Jour.Metamor. Geol., v.22, pp.547–557.

    Article  Google Scholar 

  • Fay, C., Bell, T.H. and Hobbs, B.E. (2008) Porphyroblast rotation versus nonrotation: Conflict resolution! Geology, v.36, pp.307–310.

    Article  Google Scholar 

  • Fay, C., Bell, T.H. and Hobbs, B.E. (2009) Porphyroblast rotation versus nonrotation: Conflict resolution! Reply. Geology, v.37, (in press).

  • Fisher, O. (1884) On cleavage and distortion. Geol. Mag., v.1, pp.268–276.

    Google Scholar 

  • Ghosh, S.K. (1982) The problem of shearing along axial plane foliations. Jour. Struct. Geol., v.4, pp.63–67.

    Article  Google Scholar 

  • Gray, D.R. (1978) Cleavages in deformed psammitic rocks from southeastern Australia — their nature and origin. Bull. Geol. Soc. Amer., v.89, pp.577–590.

    Article  Google Scholar 

  • Gray, D.R. and Durney, D.W. (1979) Investigations on the mechanical significance of crenulation cleavage. Tectonophysics, v.58, pp.35–79.

    Article  Google Scholar 

  • Ham, A.P. and Bell, T.H. (2004) Recycling of foliations during folding. Jour. Struct. Geol., v.26, pp.1989–2009.

    Article  Google Scholar 

  • Harker, A. (1885) The cause of slaty cleavage. Geol. Mag., v.2, pp.15–17.

    Article  Google Scholar 

  • Harker, A. (1886) On slaty cleavage and allied rock structures. Rep. Brit. Assoc. Adv. Sci., v.1885, pp.813–852.

    Google Scholar 

  • Hayward, N. (1992) Microstructural analysis of the classic snowball garnets of southeast Vermont. Evidence for nonrotation. Jourr. Met. Geol., v.10, pp.567–587.

    Article  Google Scholar 

  • Hobbs, B.E., Ord, A., Spalla, M. I., Gosso, G. and Zucali, M. (2009) The interrelationship of deformation and mineral reactions. Spec. Iss. Geol. Soc. London. (in Press).

  • Hoeppener, R. (1956) Zum Problem der Bruchbildung, Schieferung and Faltung. Geol. Rund., v.45, pp.247–283.

    Article  Google Scholar 

  • Jiang, D.Z. and Williams, P.F. (2004) Reference frame, angular momentum, and porphyroblast rotation. Jour. Struct. Geol., v.26, pp.2211–2224.

    Article  Google Scholar 

  • Johnson, M.R.W. (1967) Mylonite zones and mylonite banding. Nature, v.213, pp.246–247.

    Article  Google Scholar 

  • Lapworth, C. (1885) The Highland controversy in British Geology; its causes, course and consequences. Nature, v.32, pp.558–559.

    Google Scholar 

  • Law, R.D., Knipe, R.J. and Dayan, H. (1984) Strain path partitioning within thrust sheets: Microstructural and petrofabric evidence from the Moine thrust zone at Loch Eriboll, northwest Scotland. Jour. Struct. Geol., v.6, pp.477–497.

    Article  Google Scholar 

  • Law, R.D., Searle, M.P. and Simpson, R.L. (2004) Strain, deformation temperatures and vorticity of flow at the top of the Greater Himalayan Slab, Everest massif, Tibet. Jour. Geol. Soc. London, v.161, pp.305–320.

    Article  Google Scholar 

  • Leith, C.K. (1905) Rock Cleavage. US Geol. Surv. Bull., v.239, pp.1–216.

    Google Scholar 

  • Mamtani, M.A., Karanth, R.V. and Greiling, R.O. (1999) Are crenulation cleavage zones mylonites on the microscale? Jour. Struct. Geol., v.21, pp.711–718.

    Article  Google Scholar 

  • McLeish, A.J. (1971) Strain Analysis of deformed pipe rock in the Moine Thrust zone, northwest Scotland. Tectonophysics, v.12, pp.469–504.

    Article  Google Scholar 

  • Nakamura, N. and Borradaile, G. (2001) Do reduction spots predate finite strain? A magnetic diagnosis of Cambrian slates in North Wales. Tectonphysics, v.340, pp.133–139.

    Article  Google Scholar 

  • Passchier, C.W., Trouw, R.A.J. and Zwart, H.J. (1992) Porphyroblast rotation — eppur-si-muove. Jourr. Met. Geol., v.10, pp.283–294.

    Article  Google Scholar 

  • Peach, B.N., Horne, J., Gunn. W., Clough, C.T. and Hinxman, L.W. (1907) The geological Structure of the North-West Highlands of Scotland. Geol. Surv. Gt. Brit. Mem., 668p.

  • Platt, J.P. and Vissers, R.L.M. (1980) Extensional structures in anisotropic rocks. Jour. Struct. Geol., v.2, pp.397–410.

    Article  Google Scholar 

  • Ramsay, J.J. (1967) Folding and fracturing of rocks. McGraw Hill, London, 562p.

    Google Scholar 

  • Ramsay, J.G. and Graham, R.H. (1970) Strain variation in shear belts. Can. Jour. Earth Sci., v.7, pp.786–813.

    Google Scholar 

  • Rich, B.H. (2006) Permian shortening in the Narragansett Basin of southeastern New England, USA. Jour. Struct. Geol., v.28, pp.682–694.

    Article  Google Scholar 

  • Rosenfeld, J.L. (1968) Garnet rotations due to major Paleozoic deformations in southeast Vermont. In: Zen, E-an et al. (Eds.), Studies of Appalachian Geology. Wiley Interscience, New York, pp.185–202.

    Google Scholar 

  • Sander, B. (1970) An introduction to the study of fabrics of geological bodies. Pergamon Press, 641p.

  • Sanislav, I.V. (2009) Tectono-metamorphic evolution of the western Maine, Northern Appalachians, USA. Unpublished PhD Thesis, James Cook University, 267p.

  • Sayab, M. (2008) Correlating multiple deformation events across the Mesoproterozoic NE Australia using foliation intersection axes (FIA) preserved within porphyroblasts. Gond. Res., v.13, pp.331–351.

    Article  Google Scholar 

  • Schoneveld, C. (1977) A study of some typical inclusion patterns in strongly paracrystalline rotated garnets. Tectonophysics, v.39, pp.453–471.

    Article  Google Scholar 

  • Shah, A. (2009). Tectono-metamorphic evolution of Big Thompson Canyon region, Colorado Rocky Mountains, USA. Unpublished PhD Thesis, James Cook University, 257p.

    Google Scholar 

  • Sorby, H.C. (1853) On the origin of slaty cleavage. Edin. New Phil. Jour., v.55, pp.137–148.

    Google Scholar 

  • Sorby, H.C. (1856) On slaty cleavage as exhibited in the Devonian limestones of Devon. Phil. Mag., v.11, pp.20–36.

    Google Scholar 

  • Spiess, R. and Bell, T.H. (1996) Microstructural controls on sites of metamorphic reaction: a case study of the inter-relationship between deformation and metamorphism. European Jour. Minera., v.8, pp.165–186.

    Google Scholar 

  • Sullivan, W.A. (2008) Significance of transport-parallel strain variations in part of the Raft River shear zone, Raft River Mountains, Utah, USA. Jour. Struct. Geol., v.30, pp.138–158.

    Article  Google Scholar 

  • Voll, G. (1960) New work on petrofabrics. Liverpool and Manchester Geol. Jour., v.2, p.503–567.

    Google Scholar 

  • Weber, K. (1981) Kinematic and metamorphic aspects of cleavage formation in very low-grade metamorphic slates. Tectonophysics, v.78, pp.291–306.

    Article  Google Scholar 

  • Williams, P.F. and Schoneveld, C. (1981) Garnet rotation and the development of axial-plane crenulation cleavage. Tectonophysics, v.78, pp.307–334.

    Article  Google Scholar 

  • Wood, D.S. (1974) Current views on the development of slaty cleavage. Ann. Rev., v.2, pp.369–401.

    Google Scholar 

  • Yeh, M.-W. (2007) Deformation sequence of Baltimore gneiss domes, USA, assessed from porphyroblast Foliation Intersection Axes. Jour. Struct. Geol., v.29, pp.881–897.

    Article  Google Scholar 

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Bell, T.H., Hobbs, B.E. Foliations and shear sense: A modern approach to an old problem. J Geol Soc India 75, 137–151 (2010). https://doi.org/10.1007/s12594-010-0003-2

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