Prediction of soil settlement on soft clay soil using normalized rotational multiple yield surface framework (Nrmysf)

Soft clays are highly compressible, high-water content, low shear strength, and have poor permeability, which result in significant settlement under long-term loads. Therefore, one of the most challenging geotechnical engineering problems is to predict the settlement from soft clay soil. Normalized...

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Published in:Jurnal Teknologi
Main Author: Hamid H.A.; Noor M.J.M.; Alias R.; Alias A.
Format: Article
Language:English
Published: Penerbit UTM Press 2023
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85147014343&doi=10.11113%2fjurnalteknologi.v85.18527&partnerID=40&md5=b324e74f3b75dcb3c53fda08bad3945f
id 2-s2.0-85147014343
spelling 2-s2.0-85147014343
Hamid H.A.; Noor M.J.M.; Alias R.; Alias A.
Prediction of soil settlement on soft clay soil using normalized rotational multiple yield surface framework (Nrmysf)
2023
Jurnal Teknologi
85
1
10.11113/jurnalteknologi.v85.18527
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85147014343&doi=10.11113%2fjurnalteknologi.v85.18527&partnerID=40&md5=b324e74f3b75dcb3c53fda08bad3945f
Soft clays are highly compressible, high-water content, low shear strength, and have poor permeability, which result in significant settlement under long-term loads. Therefore, one of the most challenging geotechnical engineering problems is to predict the settlement from soft clay soil. Normalized Rotational Multiple Yield Surface Framework (NRMYSF) is developed from the soil stress-strain behaviour and shear strength characteristic. It is able to estimate the stress-strain curve for shear strength in triaxial tests. The consolidated drained (CD) triaxial tests and conventional 1-dimensional consolidation of oedometer has been conducted on soft clay soil. The settlement soil prediction was compared between the NRMYSF and conventional 1-dimensional consolidation under Terzaghi’s principle. The NRMYSF prediction model was smaller than the conventional oedometer by 0.1459m to 0.1431m for Sample A, and by 0.1890m to 0.1398m for Sample B. Therefore, this method has the potential to predict the settlement of soft clay soils. © 2023 Penerbit UTM Press. All rights reserved.
Penerbit UTM Press
1279696
English
Article
All Open Access; Gold Open Access
author Hamid H.A.; Noor M.J.M.; Alias R.; Alias A.
spellingShingle Hamid H.A.; Noor M.J.M.; Alias R.; Alias A.
Prediction of soil settlement on soft clay soil using normalized rotational multiple yield surface framework (Nrmysf)
author_facet Hamid H.A.; Noor M.J.M.; Alias R.; Alias A.
author_sort Hamid H.A.; Noor M.J.M.; Alias R.; Alias A.
title Prediction of soil settlement on soft clay soil using normalized rotational multiple yield surface framework (Nrmysf)
title_short Prediction of soil settlement on soft clay soil using normalized rotational multiple yield surface framework (Nrmysf)
title_full Prediction of soil settlement on soft clay soil using normalized rotational multiple yield surface framework (Nrmysf)
title_fullStr Prediction of soil settlement on soft clay soil using normalized rotational multiple yield surface framework (Nrmysf)
title_full_unstemmed Prediction of soil settlement on soft clay soil using normalized rotational multiple yield surface framework (Nrmysf)
title_sort Prediction of soil settlement on soft clay soil using normalized rotational multiple yield surface framework (Nrmysf)
publishDate 2023
container_title Jurnal Teknologi
container_volume 85
container_issue 1
doi_str_mv 10.11113/jurnalteknologi.v85.18527
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85147014343&doi=10.11113%2fjurnalteknologi.v85.18527&partnerID=40&md5=b324e74f3b75dcb3c53fda08bad3945f
description Soft clays are highly compressible, high-water content, low shear strength, and have poor permeability, which result in significant settlement under long-term loads. Therefore, one of the most challenging geotechnical engineering problems is to predict the settlement from soft clay soil. Normalized Rotational Multiple Yield Surface Framework (NRMYSF) is developed from the soil stress-strain behaviour and shear strength characteristic. It is able to estimate the stress-strain curve for shear strength in triaxial tests. The consolidated drained (CD) triaxial tests and conventional 1-dimensional consolidation of oedometer has been conducted on soft clay soil. The settlement soil prediction was compared between the NRMYSF and conventional 1-dimensional consolidation under Terzaghi’s principle. The NRMYSF prediction model was smaller than the conventional oedometer by 0.1459m to 0.1431m for Sample A, and by 0.1890m to 0.1398m for Sample B. Therefore, this method has the potential to predict the settlement of soft clay soils. © 2023 Penerbit UTM Press. All rights reserved.
publisher Penerbit UTM Press
issn 1279696
language English
format Article
accesstype All Open Access; Gold Open Access
record_format scopus
collection Scopus
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