Analysis of Slope Stability and Soil Liquefaction of Zoned Earth Dams Using Numerical Modeling
Анализ устойчивости откосов и разжижения грунта зональных грунтовых плотин с использованием численного моделирования
2022-08-31
SCID: 54.1/stuexdgz
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dynamic stability (earthquake loading)finite element methodsslope stabilitysoil liquefactionzoned earth dams
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Abstract (AI)
The design of dams requires comprehensive studies to ensure the safety and feasibility of these important engineering projects, as any possible failure case may lead to considerable losses in human life and properties. Specifically, analyses should be performed to evaluate seepage, slope stability, and soil liquefaction of large earth dams. In this study, numerical modeling, based on finite element methods, was used to analyze seepage, slope stability, and liquefaction of Makhoul Dam which is a large zoned dam, currently under construction on Tigris River in the north of Iraq. Earthquake shakings impose additional hysteric and short-term loads that may lead to dam failure due to high pore water pressure, piping, and soil liquefaction. Therefore, the dynamic stability of the dam and soil liquefaction were also evaluated, as a result of applying an earthquake shaking to the dam. For the static condition, the dam was safe against internal erosion and slope failure, as the calculated value of the safety factor was greater than the allowable value. However, the results obtained from the dynamic analysis indicated that a possible earthquake, with an acceleration of 0.38g and 10 seconds period, led to upstream slope failure, a relative displacement as high as 2 meters at the dam crest, and soil liquefaction at the upstream slope. As discussed herein, dam redesign or geotextile reinforcement may be considered to reduce the effects of earthquakes on the dam.
Key Findings
1
Dynamic analysis with an earthquake of 0.38g acceleration and 10 s period produced upstream slope failure and up to 2 m crest displacement.
2
Finite element numerical modeling was used to analyze seepage, slope stability, and liquefaction of the zoned Makhoul Dam.
3
Mitigation measures such as dam redesign or geotextile reinforcement are recommended to reduce earthquake effects on the dam.
4
The same dynamic earthquake loading induced soil liquefaction at the upstream slope and increased pore water pressures risking failure mechanisms like piping.
5
Under static conditions the dam was safe against internal erosion and slope failure; calculated safety factor exceeded allowable value.
Research Object
Makhoul zoned earth dam on the Tigris River (large zoned earth dam under construction)
Research Subject
Seepage, slope stability, and soil liquefaction behavior including static and dynamic stability under earthquake shaking (0.38g, 10s) assessed via finite-element numerical modeling
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2022-08-31
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