During earthquakes, hydrodynamic pressures are generated by the impounded reservoir on the dam face. The magnitude and distribution of the hydrodynamic pressures vary with factors such as frequency and intensity of earthquake-induced ground motion, depth of impounded reservoir, stiffness of dam and geological conditions. It is difficult to obtain experimental data on hydrodynamic pressures from the field owing to uncertainties associated with earthquake loading. This paper aims at using dynamic centrifuge modelling to measure hydrodynamic pressures behind both relatively stiff and flexible model dams. Comparisons of the experimental data with theoretical hydrodynamic pressures show that Westergaard's equation gives a conservative estimation of hydrodynamic pressures. Comparison with Chopra's method revealed that it underpredicts hydrodynamic pressures for low reservoir depths but gives reasonably good predictions for higher depths of reservoir. It is concluded that dynamic centrifuge modelling may be an effective experimental method to estimate the hydrodynamic pressures acting on a dam.
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June 2010
Research Article|
June 01 2010
Hydrodynamic pressures behind flexible and rigid dams
S Saleh, MPhil;
S Saleh, MPhil
1
Formerly Department of Engineering, University of Cambridge
Cambridge, UK
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S P G Madabhushi, MTech, PhD
S P G Madabhushi, MTech, PhD
2
Reader in Geotechnical Engineering, Department of Engineering, University of Cambridge
Cambridge, UK
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Publisher: Emerald Publishing
Online ISSN: 1756-8404
Print ISSN: 1368-1494
© 2010 Thomas Telford
2010
Dams and Reservoirs (2010) 20 (2): 73–82.
Citation
Saleh S, Madabhushi SPG (2010), "Hydrodynamic pressures behind flexible and rigid dams". Dams and Reservoirs, Vol. 20 No. 2 pp. 73–82, doi: https://doi.org/10.1680/dare.2010.20.2.73
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