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Effects of Water—Binder Ratio on Strength and Seismic Behavior of Stabilized Soil from Kongshavn, Port of Oslo

Lindh, Per LU and Lemenkova, Polina (2023) In Sustainability (Switzerland) 15(15).
Abstract

In many civil engineering problems, soil is stabilized by a combination of binders and water. The success of stabilization is evaluated using seismic tests with measured P-wave velocities. Optimization of process, laboratory testing and data modelling are essential to reduce the costs of the industrial projects. This paper reports the optimized workflow of soil stabilization through evaluated effects from the two factors controlling the development of strength: (1) the ratio between water and binder; (2) the proportions of different binders (cement/slag) were changed experimentally in a mixture of samples to evaluate the strength of soil. The experimental results show an optimal combination of 30% cement and 70% slag with a binder... (More)

In many civil engineering problems, soil is stabilized by a combination of binders and water. The success of stabilization is evaluated using seismic tests with measured P-wave velocities. Optimization of process, laboratory testing and data modelling are essential to reduce the costs of the industrial projects. This paper reports the optimized workflow of soil stabilization through evaluated effects from the two factors controlling the development of strength: (1) the ratio between water and binder; (2) the proportions of different binders (cement/slag) were changed experimentally in a mixture of samples to evaluate the strength of soil. The experimental results show an optimal combination of 30% cement and 70% slag with a binder content of 120 kg/m3 and a maximum water binder ratio (w/b) of 5. Such proportions of mixture demonstrated effective soil stabilization both on a pilot test scale and on full scale for industrial works. The correlation between the compressive strength and relative deformation of specimens revealed that strength has the highest values for w/b = 5 and the lowest for w/b = 7. In case of high water content in soil and wet samples, the condition of a w/b ≤ 5 will require a higher amount of binder.

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author
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organization
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type
Contribution to journal
publication status
published
subject
keywords
cement, compressive strength, curing, deformation, elastic body waves, engineering, materials science, P-wave velocity, seismic waves, slag
in
Sustainability (Switzerland)
volume
15
issue
15
article number
12016
publisher
MDPI AG
external identifiers
  • scopus:85167804426
ISSN
2071-1050
DOI
10.3390/su151512016
language
English
LU publication?
yes
id
7a35a969-fccb-435d-862e-95607c695cd1
date added to LUP
2023-11-01 14:55:14
date last changed
2023-11-01 14:55:14
@article{7a35a969-fccb-435d-862e-95607c695cd1,
  abstract     = {{<p>In many civil engineering problems, soil is stabilized by a combination of binders and water. The success of stabilization is evaluated using seismic tests with measured P-wave velocities. Optimization of process, laboratory testing and data modelling are essential to reduce the costs of the industrial projects. This paper reports the optimized workflow of soil stabilization through evaluated effects from the two factors controlling the development of strength: (1) the ratio between water and binder; (2) the proportions of different binders (cement/slag) were changed experimentally in a mixture of samples to evaluate the strength of soil. The experimental results show an optimal combination of 30% cement and 70% slag with a binder content of 120 kg/m<sup>3</sup> and a maximum water binder ratio (w/b) of 5. Such proportions of mixture demonstrated effective soil stabilization both on a pilot test scale and on full scale for industrial works. The correlation between the compressive strength and relative deformation of specimens revealed that strength has the highest values for w/b = 5 and the lowest for w/b = 7. In case of high water content in soil and wet samples, the condition of a w/b ≤ 5 will require a higher amount of binder.</p>}},
  author       = {{Lindh, Per and Lemenkova, Polina}},
  issn         = {{2071-1050}},
  keywords     = {{cement; compressive strength; curing; deformation; elastic body waves; engineering; materials science; P-wave velocity; seismic waves; slag}},
  language     = {{eng}},
  number       = {{15}},
  publisher    = {{MDPI AG}},
  series       = {{Sustainability (Switzerland)}},
  title        = {{Effects of Water—Binder Ratio on Strength and Seismic Behavior of Stabilized Soil from Kongshavn, Port of Oslo}},
  url          = {{http://dx.doi.org/10.3390/su151512016}},
  doi          = {{10.3390/su151512016}},
  volume       = {{15}},
  year         = {{2023}},
}