Seepage and stability analyses for slope susceptibility mapping within residual soils from Bukit Timah Granite in Singapore

Climate change has resulted in a greater threat of rainfall-induced slope failures in Singapore. To identify potential slope failure sites, a slope susceptibility map can be developed. As the water table is generally very deep in Singapore, shallow slip surfaces associated with rainfall-induced slop...

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Main Author: Chan, Claire Yi En
Other Authors: Harianto Rahardjo
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2020
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Online Access:https://hdl.handle.net/10356/138223
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spelling sg-ntu-dr.10356-1382232020-04-29T05:21:50Z Seepage and stability analyses for slope susceptibility mapping within residual soils from Bukit Timah Granite in Singapore Chan, Claire Yi En Harianto Rahardjo School of Civil and Environmental Engineering CHRAHARDJO@ntu.edu.sg Engineering::Civil engineering::Geotechnical Climate change has resulted in a greater threat of rainfall-induced slope failures in Singapore. To identify potential slope failure sites, a slope susceptibility map can be developed. As the water table is generally very deep in Singapore, shallow slip surfaces associated with rainfall-induced slope failures often occur within unsaturated soils. Hence, a slope susceptibility map which incorporates unsaturated soil mechanics is imperative to accurately locate areas susceptible to rainfall-induced slope failures. This study aimed to develop and evaluate slope susceptibility maps for two small zonations of Bukit Timah Granitic residual soils in Singapore. Slope susceptibility maps were developed through 1D seepage analyses using Transient Rainfall Infiltration and Grid-Based Regional Slope-Stability Model (TRIGRS) and 3D slope stability analyses using Scoops3D. To evaluate results from the slope susceptibility map, 2D seepage and stability analyses were conducted using SEEP/W and SLOPE/W incorporating measured soil-water characteristic curves and soil properties from laboratory tests. Comparison between the slope susceptibility map and 2D analyses showed that factor of safety results from the slope susceptibility map were consistently lower than those of 2D analyses. Therefore, the method of using TRIGRS and Scoops3D in the development of a slope susceptibility map to predict the spatial distribution of rainfall-induced slope failure risks within small zonations was concluded to be reasonable. Slope susceptibility maps can be made easily and accessibly as TRIGRS and Scoops3D are open-source software. At areas susceptible to rainfall-induced slope failures, slope stabilisation measures such as drainage system and planting vegetation on the face of slopes can be implemented. Bachelor of Engineering (Civil) 2020-04-29T05:21:50Z 2020-04-29T05:21:50Z 2020 Final Year Project (FYP) https://hdl.handle.net/10356/138223 en GE-14 application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic Engineering::Civil engineering::Geotechnical
spellingShingle Engineering::Civil engineering::Geotechnical
Chan, Claire Yi En
Seepage and stability analyses for slope susceptibility mapping within residual soils from Bukit Timah Granite in Singapore
description Climate change has resulted in a greater threat of rainfall-induced slope failures in Singapore. To identify potential slope failure sites, a slope susceptibility map can be developed. As the water table is generally very deep in Singapore, shallow slip surfaces associated with rainfall-induced slope failures often occur within unsaturated soils. Hence, a slope susceptibility map which incorporates unsaturated soil mechanics is imperative to accurately locate areas susceptible to rainfall-induced slope failures. This study aimed to develop and evaluate slope susceptibility maps for two small zonations of Bukit Timah Granitic residual soils in Singapore. Slope susceptibility maps were developed through 1D seepage analyses using Transient Rainfall Infiltration and Grid-Based Regional Slope-Stability Model (TRIGRS) and 3D slope stability analyses using Scoops3D. To evaluate results from the slope susceptibility map, 2D seepage and stability analyses were conducted using SEEP/W and SLOPE/W incorporating measured soil-water characteristic curves and soil properties from laboratory tests. Comparison between the slope susceptibility map and 2D analyses showed that factor of safety results from the slope susceptibility map were consistently lower than those of 2D analyses. Therefore, the method of using TRIGRS and Scoops3D in the development of a slope susceptibility map to predict the spatial distribution of rainfall-induced slope failure risks within small zonations was concluded to be reasonable. Slope susceptibility maps can be made easily and accessibly as TRIGRS and Scoops3D are open-source software. At areas susceptible to rainfall-induced slope failures, slope stabilisation measures such as drainage system and planting vegetation on the face of slopes can be implemented.
author2 Harianto Rahardjo
author_facet Harianto Rahardjo
Chan, Claire Yi En
format Final Year Project
author Chan, Claire Yi En
author_sort Chan, Claire Yi En
title Seepage and stability analyses for slope susceptibility mapping within residual soils from Bukit Timah Granite in Singapore
title_short Seepage and stability analyses for slope susceptibility mapping within residual soils from Bukit Timah Granite in Singapore
title_full Seepage and stability analyses for slope susceptibility mapping within residual soils from Bukit Timah Granite in Singapore
title_fullStr Seepage and stability analyses for slope susceptibility mapping within residual soils from Bukit Timah Granite in Singapore
title_full_unstemmed Seepage and stability analyses for slope susceptibility mapping within residual soils from Bukit Timah Granite in Singapore
title_sort seepage and stability analyses for slope susceptibility mapping within residual soils from bukit timah granite in singapore
publisher Nanyang Technological University
publishDate 2020
url https://hdl.handle.net/10356/138223
_version_ 1681059146098540544