Correlating permeability with drainage layer thickness overlying dredged marine clay in consolidation

Dredged marine clay (DMC) known to have low permeability as fine-grained soils. The reuse of DMC as construction material could be a sustainable approach. Therefore, this research aims to correlating the permeability with granular drainage layer thickness by overlaying DMC. Except sand, recycl...

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Main Authors: S.M. Johan, Siti Farhanah, Chan, Chee Ming
Other Authors: Mat Hassan, Nik Normunira
Format: Book Section
Language:English
Published: Penerbit UTHM 2022
Subjects:
Online Access:http://eprints.uthm.edu.my/6817/1/C3779_6a43f107dd547f2387a34b7d6bf37d54.pdf
http://eprints.uthm.edu.my/6817/
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Institution: Universiti Tun Hussein Onn Malaysia
Language: English
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spelling my.uthm.eprints.68172022-03-22T01:21:34Z http://eprints.uthm.edu.my/6817/ Correlating permeability with drainage layer thickness overlying dredged marine clay in consolidation S.M. Johan, Siti Farhanah Chan, Chee Ming TA Engineering (General). Civil engineering (General) Dredged marine clay (DMC) known to have low permeability as fine-grained soils. The reuse of DMC as construction material could be a sustainable approach. Therefore, this research aims to correlating the permeability with granular drainage layer thickness by overlaying DMC. Except sand, recycled granular materials (recycled pavement materials and palm oil clinker) used as drainage layer. Laboratory testing was performed to determine the engineering properties of all materials and large oedometer test for the consolidation. DMC are categorised as CH soils, while sand and palm oil clinker can be considered as well-graded except for recycled pavement materials as poor-graded gravel. The k-value of Lsc (control) placed at the bottom compared the others specimen with drainage layer due to its low permeability properties with the kave of 7.31 x 10-9 m/s. The thickness of granular materials at 100% had positioned on top of 50%. In conclusion, by increasing the thickness of drainage layer, the dissipation of water also increases and speed up the consolidation of DMC. Therefore, it can conclude that recycled granular by-products can be reuse as backfill materials for land reclaimed. Penerbit UTHM Mat Hassan, Nik Normunira Tuan Ismail, Tuan Noor Hasanah Mahmood, Salwa Raja Mamat, Tengku Nur Azila Soon Ern, Peniel Ang 2022 Book Section PeerReviewed text en http://eprints.uthm.edu.my/6817/1/C3779_6a43f107dd547f2387a34b7d6bf37d54.pdf S.M. Johan, Siti Farhanah and Chan, Chee Ming (2022) Correlating permeability with drainage layer thickness overlying dredged marine clay in consolidation. In: Multidisciplinary Engineering Science and Advanced Technology. Penerbit UTHM, UTHM, pp. 1-94. ISBN 978-967-2817-40-6
institution Universiti Tun Hussein Onn Malaysia
building UTHM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tun Hussein Onn Malaysia
content_source UTHM Institutional Repository
url_provider http://eprints.uthm.edu.my/
language English
topic TA Engineering (General). Civil engineering (General)
spellingShingle TA Engineering (General). Civil engineering (General)
S.M. Johan, Siti Farhanah
Chan, Chee Ming
Correlating permeability with drainage layer thickness overlying dredged marine clay in consolidation
description Dredged marine clay (DMC) known to have low permeability as fine-grained soils. The reuse of DMC as construction material could be a sustainable approach. Therefore, this research aims to correlating the permeability with granular drainage layer thickness by overlaying DMC. Except sand, recycled granular materials (recycled pavement materials and palm oil clinker) used as drainage layer. Laboratory testing was performed to determine the engineering properties of all materials and large oedometer test for the consolidation. DMC are categorised as CH soils, while sand and palm oil clinker can be considered as well-graded except for recycled pavement materials as poor-graded gravel. The k-value of Lsc (control) placed at the bottom compared the others specimen with drainage layer due to its low permeability properties with the kave of 7.31 x 10-9 m/s. The thickness of granular materials at 100% had positioned on top of 50%. In conclusion, by increasing the thickness of drainage layer, the dissipation of water also increases and speed up the consolidation of DMC. Therefore, it can conclude that recycled granular by-products can be reuse as backfill materials for land reclaimed.
author2 Mat Hassan, Nik Normunira
author_facet Mat Hassan, Nik Normunira
S.M. Johan, Siti Farhanah
Chan, Chee Ming
format Book Section
author S.M. Johan, Siti Farhanah
Chan, Chee Ming
author_sort S.M. Johan, Siti Farhanah
title Correlating permeability with drainage layer thickness overlying dredged marine clay in consolidation
title_short Correlating permeability with drainage layer thickness overlying dredged marine clay in consolidation
title_full Correlating permeability with drainage layer thickness overlying dredged marine clay in consolidation
title_fullStr Correlating permeability with drainage layer thickness overlying dredged marine clay in consolidation
title_full_unstemmed Correlating permeability with drainage layer thickness overlying dredged marine clay in consolidation
title_sort correlating permeability with drainage layer thickness overlying dredged marine clay in consolidation
publisher Penerbit UTHM
publishDate 2022
url http://eprints.uthm.edu.my/6817/1/C3779_6a43f107dd547f2387a34b7d6bf37d54.pdf
http://eprints.uthm.edu.my/6817/
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