Shear strength properties and soil-water characteristic curves of residual soil

The negative pore-water pressure or matric suction in unsaturated soil contributes to the shear strength and consequently the stability of residual soil slopes. Rainfall infiltration and water flow results in the decrease in matric suction, which will reduce the shear strength of the soil and may tr...

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Main Author: Li, Yang Yang
Other Authors: Harianto Rahardjo
Format: Final Year Project
Language:English
Published: 2015
Subjects:
Online Access:http://hdl.handle.net/10356/63492
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-634922023-03-03T17:19:52Z Shear strength properties and soil-water characteristic curves of residual soil Li, Yang Yang Harianto Rahardjo School of Civil and Environmental Engineering DRNTU::Engineering::Civil engineering The negative pore-water pressure or matric suction in unsaturated soil contributes to the shear strength and consequently the stability of residual soil slopes. Rainfall infiltration and water flow results in the decrease in matric suction, which will reduce the shear strength of the soil and may trigger slope failures. The unsaturated shear strength parameter (ϕb) is an unsaturated shear strength parameter, which indicates the rate of change in shear strength with respect to a change in matric suction. However, ϕb is not a constant value and ϕb value depends on the corresponding matric suctions. SLOPE/W (Geo-Slope International Ltd., 2012) is a commonly used tool for stability analysis. However, it is not capable of incorporating different ϕb values for different matric suctions. This report studies the effect of incorporating the same ϕb value and various ϕb values on the stability of residual soil slope during rainfall by using total cohesion method. Experiments were performed to obtain the saturated coefficient of permeability, soil-water characteristic curve (SWCC), and shear strength of the residual soil. The permeability function and the shear strength parameters were therefore determined and used in the seepage analysis and slope stability analysis. The results of the slope stability analyses showed a significant difference in factor of safety by incorporating the change of ϕb values and without considering the change of ϕb values. Bachelor of Engineering (Civil) 2015-05-14T05:16:47Z 2015-05-14T05:16:47Z 2015 2015 Final Year Project (FYP) http://hdl.handle.net/10356/63492 en Nanyang Technological University 54 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Civil engineering
spellingShingle DRNTU::Engineering::Civil engineering
Li, Yang Yang
Shear strength properties and soil-water characteristic curves of residual soil
description The negative pore-water pressure or matric suction in unsaturated soil contributes to the shear strength and consequently the stability of residual soil slopes. Rainfall infiltration and water flow results in the decrease in matric suction, which will reduce the shear strength of the soil and may trigger slope failures. The unsaturated shear strength parameter (ϕb) is an unsaturated shear strength parameter, which indicates the rate of change in shear strength with respect to a change in matric suction. However, ϕb is not a constant value and ϕb value depends on the corresponding matric suctions. SLOPE/W (Geo-Slope International Ltd., 2012) is a commonly used tool for stability analysis. However, it is not capable of incorporating different ϕb values for different matric suctions. This report studies the effect of incorporating the same ϕb value and various ϕb values on the stability of residual soil slope during rainfall by using total cohesion method. Experiments were performed to obtain the saturated coefficient of permeability, soil-water characteristic curve (SWCC), and shear strength of the residual soil. The permeability function and the shear strength parameters were therefore determined and used in the seepage analysis and slope stability analysis. The results of the slope stability analyses showed a significant difference in factor of safety by incorporating the change of ϕb values and without considering the change of ϕb values.
author2 Harianto Rahardjo
author_facet Harianto Rahardjo
Li, Yang Yang
format Final Year Project
author Li, Yang Yang
author_sort Li, Yang Yang
title Shear strength properties and soil-water characteristic curves of residual soil
title_short Shear strength properties and soil-water characteristic curves of residual soil
title_full Shear strength properties and soil-water characteristic curves of residual soil
title_fullStr Shear strength properties and soil-water characteristic curves of residual soil
title_full_unstemmed Shear strength properties and soil-water characteristic curves of residual soil
title_sort shear strength properties and soil-water characteristic curves of residual soil
publishDate 2015
url http://hdl.handle.net/10356/63492
_version_ 1759854175360909312