Mining Publication: Estimation of Shear Strength Using Fractals as a Measure of Rock Fracture Roughness
Original creation date: January 1993
Researchers at the U.S. Bureau of Mines investigated the use of close-range photogrammetry and subsequent stereo digitizing to obtain data from rock fracture roughness profiles. The photogrammetric process yielded results that were acceptable but somewhat inferior to those obtained by a mechanical profilometer. On the basis of this study, further pursuit of photogrammetry as a data collection method in mining is proposed. Fractal geometry was investigated as a means of measuring the roughness of rock fracture profiles. Four fractal algorithms were used: divider method, modified divider method, box method, and spectral method. A comparison of the methods gave ambiguous results. Brown's modified divider method provided the best means of obtaining the fractal dimension. Shear strength estimates were obtained using the parameters of the modified divider method and Myers' Z2 measure. Because of differences in results when comparing the different ways of obtaining the fractal dimension, future users of fractals in studies of rock fractures are advised to cross-check their results carefully.
Authors: PC McWilliams, JC Kerkering, SM Miller
Report of Investigations - January 1993
NIOSHTIC2 Number: 10003266
U.S. Department of the Interior, Bureau of Mines, Report of Investigations 9447, 1993:1-36
See Also
- Elastic and Shear Moduli of Coal Measure Rocks Derived from Basic Well Logs Using Fractal Statistics and Radial Basis Functions
- MULSIM/NL Application and Practitioner's Manual
- MULSIM/NL Theoretical and Programmer's Manual
- Numerical Modeling of Paste Sills in Underhand Cut & Fill Stopes
- Pillar Mechanics of Coal Mine Bursts: A Control Strategy
- Reservoir Rock Properties of Coal Measure Strata of the Lower Monongahela Group, Greene County (Southwestern Pennsylvania), from Methane Control and Production Perspectives
- Rock Mechanics Investigations at the Lucky Friday Mine (In Three Parts): 1. Instrumentation of an Experimental Underhand Longwall Stope
- Rock Mechanics Investigations at the Lucky Friday Mine (In Three Parts): 2. Evaluation of Underhand Backfill Practice for Rock Burst Control
- Roof Bolt Response to Shear Stress: Laboratory Analysis
- Shear Strength Evaluation of Clay-Rock Mixtures
- Content source: National Institute for Occupational Safety and Health, Mining Program