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Summary

A scanning electron microscope has been used to observe the microfabric changes in granite that are brought about by weathering. The initial ingress of weathering agencies occurs along primary cracks and pores and open cleavages and results in decomposition and solution along structurally controlled planes in feldspars, the decomposition and expansion of the biotite lattice, and solution and microfracturing of quartz.

In terms of the fundamental material nature of weathered granite, the initial stages of weathering are dominated by the opening of grain boundaries, microfracturing and the development of an intragranular porosity in feldspars. The later stages of weathering are dominated by the variable nature of the clay weathering product.

Résumé

Un microscope électronique à balayage a été utilisé pour l’observation des changements de microstructure qui affectent un granite soumis à l’altération météorique. La première avancée de l’altération se produit le long de craquelures et de pores préexistants et de clivages ouverts; elle aboutit à la décomposition et à la dissolution des feldspaths le long de plans correspondant à la structure, à la décomposition et à l’expansion du réseau de la biotite, à la dissolution et à la microfracturation du quartz.

En ce qui concerne la nature fondamentale du granite altéré, les premières phases de l’altération sont dominées par l’ouverture des surfaces de séparation des grains, la microfracturation et le développement d’une porosité intragranulaire dans les feldspaths. Les phases suivantes sont dominées par la nature variable de l’argile d’altération.

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References

  • BAKKER J.P. (1967): Weathering of granites in different climates particularly in Europe. Union Geographie Internationale, Symposium internationale de géomorphologie, Liège. Evolution des Versants. 1, 51–68

    Google Scholar 

  • BARDEN L. — SIDES G.R. (1971): Sample disturbance in the investigation of clay structures. Géotechnique, 21, 211–222.

    Article  Google Scholar 

  • BAYNES F.J. — DEARMAN W.R. (1978) : Scanning electron microscope studies of weathered rocks: a review of nomenclature and methods. Bull. Int. Assoc. Engng. Geol. No. 18.

  • BERNER R.A. — HOLDREN G.R. Jr. (1977): Mechanism of feldspar weathering; some observational evidence. Geology, 5, 369–372.

    Article  Google Scholar 

  • BIROT P. (1964): La mesure de la porosité des roches crystallines. Géomorph. Suppl. 5, 41–52.

    Google Scholar 

  • BRACE W.F. — WALSH J.B. — FRANGOS W.T. (1968): Permeability of granite under high pressure. J. Geophys. Res., 73, 2225–2236.

    Article  Google Scholar 

  • BROCK R.W. (1943): Weathering of igneous rocks near Hong Kong. Bull. Geol. Soc. Am., 54, 717–730.

    Article  Google Scholar 

  • BRUNSDEN D. (1964) : The origin of decomposed granite on Dartmoor. Dartmoor essays, ed. Simmons, G. Devonshire Assoc., 97–116.

  • CARROLL D. (1970) : Rock weathering. Plenum New York, Monographs in Geoscience. 204 pp.

  • COLLINS K. — McGOWN A. (1974): The form and function of microfabric features in a variety of natural soils. Géotechnique, 24, 223–254.

    Article  Google Scholar 

  • DEARMAN W.R. — BAYNES F.J. — IRFAN T.Y. (1976): Practical aspects of periglacial effects on weathered granite. Proc. Ussher Soc., 3, 373–381.

    Google Scholar 

  • DEERE D.U. — PATTON F.D. (1971) : Slope stability in residual soils. 4th Panam. Conf. Soil Mech. Found. Engng. San Juan, Puerto Rico. Am. Soc. civ. Engrs., 87–170.

  • DIXON H.W. (1969) : Decomposition products of rock substances. Proposed engineering geological classification. Rock Mech. Symp., Stephen Roberts Theatre, Univ. Sidney, 39–44.

  • EDEN M.J. — GREEN C.P. (1971): Some aspects of granite weathering and tor formation on Dartmoor, England. Geograf. Ann., 53A, 92–99.

    Article  Google Scholar 

  • FRIEDMAN M. (1972): Residual elastic strain in rocks. Tectonophysics, 15, 297–330.

    Article  Google Scholar 

  • GOLDICH S.S. (1938): A study in rock weathering. Journ. Geol., 46, 17–58.

    Article  Google Scholar 

  • GREEN C.P. — EDEN M.J. (1971): Gibbsite in the weathering Dartmoor granite. Geoderma, 6, 315–317.

    Article  Google Scholar 

  • HATCH F.H. — WELLS A.K. — WELLS M.K. (1972): Petrology of the Igneous rocks. Thomas Murby & Co., London. 545 pp.

    Google Scholar 

  • HEARLE J.W.S. — SPARROW J.T. — CROSS P.M. (1972): The use of the scanning electron microscope. Pergamon Press Ltd., Oxford.

    Google Scholar 

  • IRFAN T.Y. — DEARMAN W.R. (1978): Engineering petrography of a weathered granite in Cornwall, England. Q. Jl. Engng. Geol., 11, 233–44.

    Article  Google Scholar 

  • IRFAN T.Y. — DEARMAN W.R. (in press, a) : Characterisation of weathering grades in granite using standard tests on aggregates. Ann. Soc. Geol. Belgique.

  • IRFAN T.Y. — DEARMAN. W.R. (in press, b) : Micropetrographic and engineering characterization of a weathered granite. Ann. Soc. Geol. Belgique.

  • ISHERWOOD D. — STREET A. (1976): Biotite induced grussification of the Boulder Creek Granodiorite, Boulder County, Colorado. Geol. Soc. Am. Bull. 87, 366–370.

    Article  Google Scholar 

  • JACKSON M.L. (1963) : Interlaying of expansible layer silicates in soils by chemical weathering. Clays and Clay Minerals. Monograph No. 13, Earth Science Series. Proc. Eleventh Nat. Conf. ed. Ingerson, E. Pergamon Press.

  • KIERSCH G.A. — TREASHER (1955): Investigations, areal and engineering geology — Folsom Dam Project, Central California. Econ. Geol., 50, 271–310.

    Article  Google Scholar 

  • KRINSLEY D.H. — DOORNKAMP J.C. (1973) : Atlas of quartz sand surface textures. Cambridge Earth Science Series, Cambridge University Press.

  • LITTLE A.L. (1967) : Laterites. Proc. 3rd Asian Reg. Conf. Soil Mech. & Found. Engr., Haifa, Israel 11, 61–71.

  • LOUGHNAN F.C. (1969): Chemical weathering of the silicate minerals. Elsevier, London, 154 pp.

    Google Scholar 

  • LUMB P. (1962): The properties of decomposed granite. Géotechnique, 12, 226–243.

    Article  Google Scholar 

  • MONTGOMERY C.W. — BRACE W.F. (1975): Micropores in Plagioclase. Contrib. to Mineral. Petrol., 52, 17–28.

    Article  Google Scholar 

  • MOYE D.G. (1955): Engineering Geology for the Snowy Mountains scheme. Jour. Instit. Engrs., Australia, 27, 287–298.

    Google Scholar 

  • NEWBERY J. (1970): Engineering geology in the investigation and construction of the Batang Padang hydroelectric scheme, Malaysia. Q. Jl. Engng. Geol., 3, 151–181.

    Article  Google Scholar 

  • NUR A. — SIMMONS G. (1970): The origin of small cracks in igneous rocks. Int. Journ. Rock Mech. Min. Sci., 7, 307–314.

    Article  Google Scholar 

  • OLLIER C. (1969): Weathering. Geomorphology texts. Oliver and Boyd, Edinburgh. 304 pp.

    Google Scholar 

  • PRICE N.J. (1966) : Fault and joint development in brittle and semibrittle rock. Pergamon Press Ltd. 173 pp.

  • RUXTON B.P. — BERRY L. (1957): Weathering of granite and associated erosional features in Hong Kong. Bull. Geol. Soc. Am. 68, 1263–1292.

    Article  Google Scholar 

  • ŠAMALIKOVA M. (1974) : Constructive weathering of granite on the dam profile near Liberec, Czechoslovakia. Proc. 2nd Int. Cong. Int. Ass. Eng. Geol., São Paulo, Brazil, 1, IV-8-1.

  • SAUNDERS M.K. — FOOKES P.G. (1970): A review of the relationship of rock weathering and climate and its significance to foundation engineering. Engng. Geol., 4, 289–325.

    Article  Google Scholar 

  • SPRUNT E. — BRACE W.F. (1974): Direct observation of microcavities in crystalline rocks. Int. J. Rock Mech. Min. Sci. & Geomech. Abstr., 11, 139–150.

    Article  Google Scholar 

  • TAPPONNIER P. — BRACKE W.F. (1976): Development of stress induced microcracks in Westerly granite. Int. J. Rock Mech. Min. Sci. & Geomech. Abstr., 13, 103–112.

    Article  Google Scholar 

  • VAN OLPHEN H. (1963): An introduction to soil colloid chemistry. New York: John Wiley & Sons.

    Google Scholar 

  • VARGAS M. (1953) : Some engineering properties of residual clay soils occurring in Southern Brazil. Proc. 3rd. Int. Conf. Soil Mech., 1, 67–71.

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Baynes, J., Dearman, W.R. The microfabric of a chemically weathered granite. Bulletin of the International Association of Engineering Geology 18, 91–100 (1978). https://doi.org/10.1007/BF02635354

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