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August 1, 1985Canadian Geotechnical Journal52 citations

Multiple seepage faces on layered slopes and their implications for slope-stability analysis

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JRJennifer J. RulonRFR. Allan Freeze

Key Points

  • To analyze water-table configurations, pore-pressure distributions, and unsaturated zones in layered hillsides and determine their effects on slope-stability assessments.
  • Simulated two-dimensional, saturated–unsaturated, steady-state groundwater flow through layered slopes using a finite-element model.
  • Verified the mathematical model's physical foundation through a laboratory sand-tank experiment.
  • Identified that layered slopes develop multiple seepage faces, perched water tables, and wedge-shaped unsaturated zones beneath impeding layers.
  • Demonstrated that pore-pressure fields strongly depend on the position and hydraulic properties of impeding layers, causing homogeneous saturated models to produce significant errors.
  • Found that failing to incorporate unsaturated wedges beneath impeding layers leads to the overdesign of the stable slope angle.

Abstract

This study provides an analysis of the water-table configuration and pore-pressure distribution in layered hillsides. A finite-element model was used to simulate two-dimensional, saturated–unsaturated, steady-state flow through layered slopes. A laboratory sand-tank experiment was used to verify the physical foundation of the mathematical model. It is shown that layered slopes feature multiple seepage faces, perched water tables, and wedge-shaped unsaturated zones. The pore-pressure distribution and the distribution of multiple seepage faces are strongly dependent on the position of the impeding layers and their hydraulic properties. Predictions of pore-pressure fields based on homogeneous, saturated analyses may be significantly in error when applied to problems on layered slopes. Slope-stability analyses on layered slopes that do not take into account the presence of unsaturated wedges beneath the impeding layers can lead to overdesign of the stable slope angle. Key words: groundwater conditions, unsaturated zone, layered slopes, seepage face, slope stability.

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Cite This Study

Rulon et al. (1985) studied this question.

synapsesocial.com/papers/6a09fd1a16dfdfe7ed348811https://doi.org/10.1139/t85-047
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