Regional stability and adaptation measures slope failures due to rainfall in Singapore


Chan Y.E.C. Ng Q.L. Satyanaga A. Rahardjo H.
29 January 2021ICE Publishing

Environmental Geotechnics
2021#11Issue 5341 - 354 pp.

As heavier rainfall intensities are expected in the future, it is important to employ preventive measures for the anticipated possibility of residual soil slope failures. This study primarily focuses on the principles of unsaturated soil mechanics to establish an appropriate framework for adaptation measures against extreme rainfall conditions. These adaptation measures consist of the development and evaluation of slope susceptibility maps, as well as the planting of vegetation for critical slopes based on regional stability analyses of residual soils within Bukit Timah Granite and Old Alluvium in Singapore. In this study, slope susceptibility maps were developed for three zones of residual soils within Bukit Timah Granite and Old Alluvium in Singapore. The pore-water pressure distributions and factors of safety within each zone were obtained from the Transient Rainfall Infiltration and Grid-based Regional Slope-stability model (TRIGRS) analysis and Scoops3D software, respectively. Results from the slope susceptibility maps were verified against two-dimensional (2D) numerical analyses. The 2D numerical models were verified through instrumentation data. The results from slope susceptibility maps agreed with the results from 2D numerical analyses. In addition, the inclusion of vegetation at the slope face was concluded to be an effective slope stabilisation measure from the simulated 2D numerical analyses.

geotechnical engineering , seepage , soil stabilisations

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Nanyang Technological University, Singapore, Singapore
Department of Civil and Environmental Engineering, School of Engineering and Digital Sciences, Nazarbayev University, Nur-Sultan, Kazakhstan
School of Civil and Environmental Engineering, Nanyang Technological University, Singapore, Singapore

Nanyang Technological University
Department of Civil and Environmental Engineering
School of Civil and Environmental Engineering

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