Heuze F E. 1980. Scale effects in the determination of rock mass strength and deformability. Rock Mechanics, 12(3?4): 167?192.
[9]
Jaeger J C and Cook N G W. 1976. Fundamentals of Rock Mechanics. New York: John Wiley.
[10]
Paterson M S. 1978. Theories of Brittle Failure // Paterson M S and Wong T. Experimental Rock Deformation ― The Brittle Field. Springer Berlin Heidelberg: 51?70.
[11]
Sibson R H. 1977. Fault rocks and fault mechanisms. Journal of the Geological Society, 133(3): 191?213.
[12]
Strehlau J. 1986. A discussion of the depth extent of rupture in large continental earthquakes. Earthquake Source Mechanics, 37: 131?145.
[13]
Vermilye J M and Scholz C H. 1995. Relation between vein length and aperture. Journal of structural Geology, 17(3): 423?434.
Bandis S. 1980. Experimental Studies of Scale Effects on Shear Strength, and Deformation of Rock Joints. University of Leeds Ph.D Dissertation.
[26]
Cervantes P. 2007. Tectonic Fibrous Veins: Initiation and Evolution. Ouachita Orogen, Arkansas. Texas: Texas A&M University: 4?49.
[27]
Dugdale D S. 1960. Yielding of steel sheets containing slits. Journal of the Mechanics and Physics of Solids, 8(2): 100?104.
[28]
Evans B, Fredrich J T and Wong T F. 1990. The brittle? ductile transition in rocks: Recent experimental and theoretical progress. The Brittle?Ductile Transition in Rocks, 56: 1?20.
[29]
Klimczak C, Schultz R A, Parashar R and Reeves D M. 2010. Cubic law with aperture-length correlation: Implications for network scale fluid flow. Hydrogeology Journal, 18(4): 851?862.
[30]
Lehmann B. 1990. Metallogeny of Tin. Lecture notes in earth sciences. Berlin: Springer Verlag: 32.