Chapter
May 6, 2013
Appendix A

Rock Scour

Publication: Sedimentation Engineering: Processes, Measurements, Modeling, and Practice
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REFERENCES

Andreev, G. E. (1995). Brittle failure of rock materials, Balkema, Rotterdam, Brookfield.
Annandale, G. W. (1995). “Erodibility.” J. Hydr. Res., 33(4), 471–494.
Annandale, G. W. (2006). Scour technology, McGraw-Hill, New York.
Atkinson, B. K. (1987). Fracture mechanics of rock, Academic Press, London.
Bollaert, E.F.R. (2002). “The influence of plunge pool air entrainment on the presence of free air in rock joints.” Proc. of the Int. Workshop on Rock Scour, EPFL, Lausanne, Switzerland, 137–149.
Bollaert, E.F.R. (2004a). A comprehensive model to evaluate scour formation in plunge pools. Int. J. Hydropower & Dams, 2004, 2004(1), pp. 94–101.
Bollaert, E.F.R. (2004b). A new procedure to evaluate dynamic uplift of concrete linings or rock blocks in plunge pools, International Conference on Hydraulics of Dams and River Structures, Teheran, Iran.
Bollaert, E.F.R. (2005). The Influence of Geomechanic and Hydrological Uncertainties on Scour at Large Dams: Case Study of Kariba Dam (Zambia-Zimbabwe). 73rd Annual ICOLD Meeting, Tehran, Iran.
Bollaert, E.F.R. (2006). Physics Based Model Applied to Tucurui Dam (Brazil). 3rd Intl. Conference on Scour and Erosion, Amsterdam, The Netherlands.
Bollaert, E. F. R., and Annandale, G. W. (2004, April). “Parametric comparison of erodibility index method and comprehensive scour model.” Int. Conference on Hydraulics of Dams and River Structures, Tehran, Iran.
Bollaert, E.F.R. and Schleiss, A. (2003). Scour of rock due to the impact of plunging high velocity jets Part II: Experimental results of dynamic pressures at pool bottoms and in one-and two-dimensional closed end rock joints. Journal of Hydraulic Research, 41(5), 465–480.
Bollaert, E.F.R., and Schleiss, A. (2005). Physically based model for evaluation of rock scour due to high-velocity jet impact. Journal of Hydraulic Engineering, 131(3), 153–165.
Bollaert, E.F.R. and Mason, P.J. (2006). A Physically Based Model for Scour Prediction at Srisailam Dam. Intl. Journal on Hydropower & Dams, Issue 4, 96–103.
Bollaert, E.F.R., Vrchoticky, B. and Falvey, H.T. (2006). Extreme Scour Prediction at High-Head Concrete Dam and Stilling Basin (United States). 3rd Intl. Conf. on Scour and Erosion, Amsterdam, The Netherlands.
Deere, D.U., and Deere, D. W. (1988). “The rock quality designation (RQD) index in practice.” Rock classification systems for engineering purposes: ASTM STP-984, Kirkaldie L., ed., American Society for Testing and Materials, Philadelphia, 91–101.
Emmerling, R. (1973). “The instantaneous structure of the wall pressure under a turbulent boundary layer flow,” Report 56/1973, Gottingen, Germany, Max Planck Institute for Flow Research.
Ervine, D.A., and Falvey, H. R. (1987). “Behavior of turbulent jets in the atmosphere and in plunge pools.” Proc. of the Institution of Civil Engineers, pt. 2, vol. 83, 295–314.
Ervine, D.A., Falvey, H. R., and Withers, W. (1997). “Pressure fluctuations on plunge pool floors.” J. Hydr. Res., 35(2), 257–279.
George, M., and Annandale, G. W. (2006). “Case study: Kariba Dam plunge pool scour.” Proc. Third Int. Conference on Scour, Amsterdam.
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Kirsten, H. A. D. (1988). “Case histories of groundmass characterization for excavatability.” Rock classification systems for engineering purposes: ASTM, STP 984, Kirkaldie L, ed., American Society for Testing and Materials, Philadelphia, 102–120.
Kirsten, H. A. D. (1982). “A classification system for excavation in natural materials.” The Civil Engineer in South Africa, July, 292–308 (discussion in vol. 25, no. 5, May 1983).
Schleiss, A.J. and Bollaert, E.F.R. (2002). Rock Scour due to Falling High-Velocity Jets, A.A. Balkema Publishers, The Netherlands.
Whittaker, B.N., Singh, R. N., and Sun, G. (1992). Rock fracture mechanics, Elsevier, The Netherlands.

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Sedimentation Engineering: Processes, Measurements, Modeling, and Practice
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