Cement and Silica Fume Treated Columns to Improve Peat Ground

Peat layers are weak; much weaker and more compressible than inorganic soils, and thus do not provide suitable support for most engineering structures. The usual methods have been either to remove peat and replace it with suitable soil or to pass piles through it to the stronger soil layers below. O...

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Main Authors: Kim Huat, Bujang, Kalantari, Behzad, Prasad, Arun
Format: Article
Language:English
English
Published: 2013
Online Access:http://psasir.upm.edu.my/id/eprint/28630/1/Cement%20and%20Silica%20Fume%20Treated%20Columns%20to%20Improve%20Peat%20Ground.pdf
http://psasir.upm.edu.my/id/eprint/28630/
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Institution: Universiti Putra Malaysia
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spelling my.upm.eprints.286302015-09-18T02:16:57Z http://psasir.upm.edu.my/id/eprint/28630/ Cement and Silica Fume Treated Columns to Improve Peat Ground Kim Huat, Bujang Kalantari, Behzad Prasad, Arun Peat layers are weak; much weaker and more compressible than inorganic soils, and thus do not provide suitable support for most engineering structures. The usual methods have been either to remove peat and replace it with suitable soil or to pass piles through it to the stronger soil layers below. On the other hand, research has been carried out to discover ways to strengthen peat deposits by deep stabilization. Peat was reinforced with precast columns stabilized with cement and silica fume. Unconfined compressive strength, Rowe cell consolidation test and plate load test were carried out to evaluate the increase in strength. The compression index (C c) of peat samples, upon use of stabilized precast columns, was found to reduce by 36 % using only 5 % cement. Further, when 10 % silica fume was added along with cement, the C c decreased by 42 %. Plate load test results indicated that the bearing capacity of peat can be improved significantly by over 84.6 % when 15 % cement is used, and also the use of silica fume with cement further increased it to 107.7 % compared with untreated peat. The precast stabilized columns (stabilized with cement and silica fume) can be used successfully to improve the engineering behaviour of soft peat deposits and as a result improve its strength and bearing capacity. Finite element analysis was carried out to understand the distribution of stresses in peat as well as in the stabilized column. 2013 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/28630/1/Cement%20and%20Silica%20Fume%20Treated%20Columns%20to%20Improve%20Peat%20Ground.pdf Kim Huat, Bujang and Kalantari, Behzad and Prasad, Arun (2013) Cement and Silica Fume Treated Columns to Improve Peat Ground. Arabian Journal for Science and Engineering, 38 (4). pp. 805-816. ISSN 1319-8025 10.1007/s13369-012-0369-0 English
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
English
description Peat layers are weak; much weaker and more compressible than inorganic soils, and thus do not provide suitable support for most engineering structures. The usual methods have been either to remove peat and replace it with suitable soil or to pass piles through it to the stronger soil layers below. On the other hand, research has been carried out to discover ways to strengthen peat deposits by deep stabilization. Peat was reinforced with precast columns stabilized with cement and silica fume. Unconfined compressive strength, Rowe cell consolidation test and plate load test were carried out to evaluate the increase in strength. The compression index (C c) of peat samples, upon use of stabilized precast columns, was found to reduce by 36 % using only 5 % cement. Further, when 10 % silica fume was added along with cement, the C c decreased by 42 %. Plate load test results indicated that the bearing capacity of peat can be improved significantly by over 84.6 % when 15 % cement is used, and also the use of silica fume with cement further increased it to 107.7 % compared with untreated peat. The precast stabilized columns (stabilized with cement and silica fume) can be used successfully to improve the engineering behaviour of soft peat deposits and as a result improve its strength and bearing capacity. Finite element analysis was carried out to understand the distribution of stresses in peat as well as in the stabilized column.
format Article
author Kim Huat, Bujang
Kalantari, Behzad
Prasad, Arun
spellingShingle Kim Huat, Bujang
Kalantari, Behzad
Prasad, Arun
Cement and Silica Fume Treated Columns to Improve Peat Ground
author_facet Kim Huat, Bujang
Kalantari, Behzad
Prasad, Arun
author_sort Kim Huat, Bujang
title Cement and Silica Fume Treated Columns to Improve Peat Ground
title_short Cement and Silica Fume Treated Columns to Improve Peat Ground
title_full Cement and Silica Fume Treated Columns to Improve Peat Ground
title_fullStr Cement and Silica Fume Treated Columns to Improve Peat Ground
title_full_unstemmed Cement and Silica Fume Treated Columns to Improve Peat Ground
title_sort cement and silica fume treated columns to improve peat ground
publishDate 2013
url http://psasir.upm.edu.my/id/eprint/28630/1/Cement%20and%20Silica%20Fume%20Treated%20Columns%20to%20Improve%20Peat%20Ground.pdf
http://psasir.upm.edu.my/id/eprint/28630/
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