Unsaturated shear strength of soil with bimodal soil-water characteristic curve

Many research works have been carried out to develop equations for shear strength of unsaturated soil. However, most of the equations are limited to soils with unimodal soil-water characteristic curves (SWCC). The objective of this study is to propose an equation for estimating the unsaturated she...

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Main Authors: Satyanaga, Alfrendo, Rahardjo, Harianto
Other Authors: School of Civil and Environmental Engineering
Format: Article
Language:English
Published: 2021
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Online Access:https://hdl.handle.net/10356/152135
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1521352021-09-03T02:14:59Z Unsaturated shear strength of soil with bimodal soil-water characteristic curve Satyanaga, Alfrendo Rahardjo, Harianto School of Civil and Environmental Engineering Engineering::Civil engineering::Geotechnical Laboratory Tests Residual Soils Many research works have been carried out to develop equations for shear strength of unsaturated soil. However, most of the equations are limited to soils with unimodal soil-water characteristic curves (SWCC). The objective of this study is to propose an equation for estimating the unsaturated shear strength of soils with bimodal SWCCs. Several series of unsaturated consolidated drained triaxial tests were carried out on statically compacted sand–kaolin specimens to evaluate the proposed equation. The experimental results indicated that the ϕb angle of the soil with bimodal SWCC at suctions between the first air-entry value (AEV1) and the second air-entry value (AEV2) was less than the ϕb angle at suctions below AEV1. However, the relationships between shear strength and suction at suctions between AEV1 and AEV2 were still linear. At suctions beyond AEV2, the ϕb angle of the soil with bimodal SWCC started to decrease non-linearly. The evaluation results showed that the estimated bimodal shear strength using the proposed equation in this study had good agreement with the shear strength data from the experimental works. Housing & Development Board Nanyang Technological University Accepted version This work was supported by a research grant from a collaboration project between the Housing and Development Board and Nanyang Technological University (NTU), Singapore. The authors gratefully acknowledge the assistance of the Geotechnical Laboratory staff, School of Civil and Environmental Engineering, NTU, Singapore during the experiments and data collections. 2021-09-03T02:14:58Z 2021-09-03T02:14:58Z 2019 Journal Article Satyanaga, A. & Rahardjo, H. (2019). Unsaturated shear strength of soil with bimodal soil-water characteristic curve. Géotechnique, 69(9), 828-832. https://dx.doi.org/10.1680/jgeot.17.P.108 0016-8505 https://hdl.handle.net/10356/152135 10.1680/jgeot.17.P.108 9 69 828 832 en Géotechnique © 2019 ICE Publishing. All rights reserved. This paper was published in Géotechnique and is made available with permission of ICE Publishing. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Civil engineering::Geotechnical
Laboratory Tests
Residual Soils
spellingShingle Engineering::Civil engineering::Geotechnical
Laboratory Tests
Residual Soils
Satyanaga, Alfrendo
Rahardjo, Harianto
Unsaturated shear strength of soil with bimodal soil-water characteristic curve
description Many research works have been carried out to develop equations for shear strength of unsaturated soil. However, most of the equations are limited to soils with unimodal soil-water characteristic curves (SWCC). The objective of this study is to propose an equation for estimating the unsaturated shear strength of soils with bimodal SWCCs. Several series of unsaturated consolidated drained triaxial tests were carried out on statically compacted sand–kaolin specimens to evaluate the proposed equation. The experimental results indicated that the ϕb angle of the soil with bimodal SWCC at suctions between the first air-entry value (AEV1) and the second air-entry value (AEV2) was less than the ϕb angle at suctions below AEV1. However, the relationships between shear strength and suction at suctions between AEV1 and AEV2 were still linear. At suctions beyond AEV2, the ϕb angle of the soil with bimodal SWCC started to decrease non-linearly. The evaluation results showed that the estimated bimodal shear strength using the proposed equation in this study had good agreement with the shear strength data from the experimental works.
author2 School of Civil and Environmental Engineering
author_facet School of Civil and Environmental Engineering
Satyanaga, Alfrendo
Rahardjo, Harianto
format Article
author Satyanaga, Alfrendo
Rahardjo, Harianto
author_sort Satyanaga, Alfrendo
title Unsaturated shear strength of soil with bimodal soil-water characteristic curve
title_short Unsaturated shear strength of soil with bimodal soil-water characteristic curve
title_full Unsaturated shear strength of soil with bimodal soil-water characteristic curve
title_fullStr Unsaturated shear strength of soil with bimodal soil-water characteristic curve
title_full_unstemmed Unsaturated shear strength of soil with bimodal soil-water characteristic curve
title_sort unsaturated shear strength of soil with bimodal soil-water characteristic curve
publishDate 2021
url https://hdl.handle.net/10356/152135
_version_ 1710686926170750976