Prediction of the conditions under which landslides may occur is essential for designing sustainable risk-mitigation measures and cost-effective geotechnical structures. Slope stability analyses typically account for slope geometry, soil mechanical properties and groundwater conditions to determine the performance of a slope with respect to a specified factor of safety. These properties vary both spatially and over time; geotechnical design codes require the use of factored design parameter values to account for possible worst-case conditions. Furthermore, standard geotechnical analyses typically exclude the dynamic hydrological processes of rainfall infiltration and loss of matric suction that often trigger landslides. Slope stability assessment is particularly challenging in developing countries with limited resources for acquiring slope data, meeting conservative design standards and mitigating landslide risk. This study applied a combined slope hydrology and stability model to address these issues for a residual soil slope in the tropics. This paper presents a method for maximising stability information from limited data, disaggregating the effects of three different design parameter sets and factor of safety threshold choices, as well as diagnosing the dominant geotechnical and dynamic landslide-triggering factors. This modelling approach provides a more transparent basis for sustainable slope-management decisions.
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1 February 2018
Research Article|
April 10 2017
Analysis of design choices for a slope stability scenario in the humid tropics Available to Purchase
Casey J Shepheard
;
Casey J Shepheard
MEng student
Department of Civil Engineering, University of Bristol, Bristol, UK
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Paul J Vardanega, BE, MEngSc (QldUT), PhD (Cantab), GMICE, MASCE, MIEAust, FHEA
;
Lecturer in Civil Engineering
Department of Civil Engineering, University of Bristol, Bristol, UK
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Elizabeth A Holcombe, MSc, PhD (Brist), GMICE, FHEA
;
Elizabeth A Holcombe, MSc, PhD (Brist), GMICE, FHEA
Lecturer in Natural Hazards Engineering
Department of Civil Engineering, University of Bristol, Bristol, UK
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Katerina Michaelides, BSc, PhD (Lond)
Katerina Michaelides, BSc, PhD (Lond)
Senior Lecturer
School of Geographical Sciences, University of Bristol, Bristol, UK
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Publisher: Emerald Publishing
Received:
December 06 2016
Accepted:
March 01 2017
Online ISSN: 1751-7680
Print ISSN: 1478-4629
ICE Publishing: All rights reserved
2018
Proceedings of the Institution of Civil Engineers - Engineering Sustainability (2018) 171 (1): 37–52.
Article history
Received:
December 06 2016
Accepted:
March 01 2017
Citation
Shepheard CJ, Vardanega PJ, Holcombe EA, Michaelides K (2018), "Analysis of design choices for a slope stability scenario in the humid tropics". Proceedings of the Institution of Civil Engineers - Engineering Sustainability, Vol. 171 No. 1 pp. 37–52, doi: https://doi.org/10.1680/jensu.16.00081
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