Analyses and design of steep slope with GeoBarrier System (GBS) under heavy rainfall
A GeoBarrier system (GBS) is a combination system of reinforced soil walls to stabilize near-vertical cut slopes and capillary barrier principles to protect the wall from the effect of rainfall infiltration. Singapore requires construction materials that are cost-effective to support sustainable urb...
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sg-ntu-dr.10356-1515272021-06-21T07:18:03Z Analyses and design of steep slope with GeoBarrier System (GBS) under heavy rainfall Rahardjo, Harianto Kim, Yongmin Gofar, Nurly Satyanaga, Alfrendo School of Civil and Environmental Engineering Engineering::Civil engineering::Geotechnical GeoBarrier System (GBS) Reinforced Soil Wall A GeoBarrier system (GBS) is a combination system of reinforced soil walls to stabilize near-vertical cut slopes and capillary barrier principles to protect the wall from the effect of rainfall infiltration. Singapore requires construction materials that are cost-effective to support sustainable urban development. Therefore, recycled materials are utilized as GBS materials to avoid the use of high-cost materials, such as steel or concrete. GBS consists of planting geobags with unique geosynthetic pockets for sustainable plant growth as a facing layer of GBS. The negative pore-water pressure (suction) within the reinforced soil behind GBS was assured to be constant during rainfall since GBS is designed specially to minimize the rainfall infiltration into the reinforced soil. This paper presents the practical design and stability analysis of the GBS, considering the presence of suction within the reinforced soil body. The monitoring of GBS performance in the field was carried out via field instrumentation. Finite element analyses of the GBS under extreme rainfalls were also performed for evaluation of the GBS performance. The field instrumentations and numerical analysis results showed that GBS was able to protect the slope from rainfall infiltration; therefore, the stability of the slope retained by GBS was not affected by the rainfall. Results from the analytical calculation showed that the most critical mode of failure is sliding along the base, followed by the global and local slope stability. The GBS is not susceptible to local instability. Ministry of National Development (MND) Accepted version The findings presented in this paper are based on the project “Geobarrier System for Use in Underground Structure” (Grant No.SUL2013-3) that is supported by a research grant from the Ministry of National Development Research Fund on Sustainable Urban Living, Singapore. 2021-06-21T06:52:57Z 2021-06-21T06:52:57Z 2020 Journal Article Rahardjo, H., Kim, Y., Gofar, N. & Satyanaga, A. (2020). Analyses and design of steep slope with GeoBarrier System (GBS) under heavy rainfall. Geotextiles and Geomembranes, 48(2), 157-169. https://dx.doi.org/10.1016/j.geotexmem.2019.11.010 0266-1144 https://hdl.handle.net/10356/151527 10.1016/j.geotexmem.2019.11.010 2 48 157 169 en Grant Number: SUL2013-3 Geotextiles and Geomembranes © 2019 Elsevier. All rights reserved. This paper was published in Geotextiles and Geomembranes and is made available with permission of Elsevier. application/pdf |
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Engineering::Civil engineering::Geotechnical GeoBarrier System (GBS) Reinforced Soil Wall Rahardjo, Harianto Kim, Yongmin Gofar, Nurly Satyanaga, Alfrendo Analyses and design of steep slope with GeoBarrier System (GBS) under heavy rainfall |
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A GeoBarrier system (GBS) is a combination system of reinforced soil walls to stabilize near-vertical cut slopes and capillary barrier principles to protect the wall from the effect of rainfall infiltration. Singapore requires construction materials that are cost-effective to support sustainable urban development. Therefore, recycled materials are utilized as GBS materials to avoid the use of high-cost materials, such as steel or concrete. GBS consists of planting geobags with unique geosynthetic pockets for sustainable plant growth as a facing layer of GBS. The negative pore-water pressure (suction) within the reinforced soil behind GBS was assured to be constant during rainfall since GBS is designed specially to minimize the rainfall infiltration into the reinforced soil. This paper presents the practical design and stability analysis of the GBS, considering the presence of suction within the reinforced soil body. The monitoring of GBS performance in the field was carried out via field instrumentation. Finite element analyses of the GBS under extreme rainfalls were also performed for evaluation of the GBS performance. The field instrumentations and numerical analysis results showed that GBS was able to protect the slope from rainfall infiltration; therefore, the stability of the slope retained by GBS was not affected by the rainfall. Results from the analytical calculation showed that the most critical mode of failure is sliding along the base, followed by the global and local slope stability. The GBS is not susceptible to local instability. |
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School of Civil and Environmental Engineering |
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School of Civil and Environmental Engineering Rahardjo, Harianto Kim, Yongmin Gofar, Nurly Satyanaga, Alfrendo |
format |
Article |
author |
Rahardjo, Harianto Kim, Yongmin Gofar, Nurly Satyanaga, Alfrendo |
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Rahardjo, Harianto |
title |
Analyses and design of steep slope with GeoBarrier System (GBS) under heavy rainfall |
title_short |
Analyses and design of steep slope with GeoBarrier System (GBS) under heavy rainfall |
title_full |
Analyses and design of steep slope with GeoBarrier System (GBS) under heavy rainfall |
title_fullStr |
Analyses and design of steep slope with GeoBarrier System (GBS) under heavy rainfall |
title_full_unstemmed |
Analyses and design of steep slope with GeoBarrier System (GBS) under heavy rainfall |
title_sort |
analyses and design of steep slope with geobarrier system (gbs) under heavy rainfall |
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2021 |
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https://hdl.handle.net/10356/151527 |
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