Experimental Studies on the Stability Assessment of a Levee Using Reinforced Soil Based on a Biopolymer

Cement and other similar compounds have been used to prevent a levee breach during a flood. However, the demand is increasing for eco-friendly and sustainable alternatives to replace the conventional method for levee stabilization and strengthening. To improve the durability and environmental friend...

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Main Authors: Dongwoo Ko, Joongu Kang
Format: Article
Language:English
Published: MDPI AG 2018-08-01
Series:Water
Subjects:
Online Access:http://www.mdpi.com/2073-4441/10/8/1059
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spelling doaj-79cbe131d5b6438bb85e62aaf31f6d4c2020-11-24T22:22:56ZengMDPI AGWater2073-44412018-08-01108105910.3390/w10081059w10081059Experimental Studies on the Stability Assessment of a Levee Using Reinforced Soil Based on a BiopolymerDongwoo Ko0Joongu Kang1Korea Institute of Civil Engineering and Building Technology (KICT), Goyang-Si 10223, Gyeonggi-Do, KoreaKorea Institute of Civil Engineering and Building Technology (KICT), Goyang-Si 10223, Gyeonggi-Do, KoreaCement and other similar compounds have been used to prevent a levee breach during a flood. However, the demand is increasing for eco-friendly and sustainable alternatives to replace the conventional method for levee stabilization and strengthening. To improve the durability and environmental friendliness of a levee, the Andong River Experiment Center applied a biopolymer, which is a new eco-friendly substance, to fabricate a levee model, and conducted a hydraulic model experiment to evaluate the reliability and stability of the new type of levee. An image analysis was applied to calculate the scale of the breaches of the levee slopes. Based on the experimental results obtained, the characteristics of the breach between an earthen levee and the proposed levee were compared. The stability of the levee body was also evaluated according to the thickness of the new substance. The ultimate aim of this study was to derive the optimal conditions by verifying the performance and effectiveness of the new substance in terms of levee breach factors such as overflow, seepage, or piping in a series of hydraulic experiments. In the future, the field application of these optimal conditions will be verified through a real-scale experiment.http://www.mdpi.com/2073-4441/10/8/1059environment-friendlybiopolymerriver leveeoverflowlevee breachpixel-based analysisstability assessment
collection DOAJ
language English
format Article
sources DOAJ
author Dongwoo Ko
Joongu Kang
spellingShingle Dongwoo Ko
Joongu Kang
Experimental Studies on the Stability Assessment of a Levee Using Reinforced Soil Based on a Biopolymer
Water
environment-friendly
biopolymer
river levee
overflow
levee breach
pixel-based analysis
stability assessment
author_facet Dongwoo Ko
Joongu Kang
author_sort Dongwoo Ko
title Experimental Studies on the Stability Assessment of a Levee Using Reinforced Soil Based on a Biopolymer
title_short Experimental Studies on the Stability Assessment of a Levee Using Reinforced Soil Based on a Biopolymer
title_full Experimental Studies on the Stability Assessment of a Levee Using Reinforced Soil Based on a Biopolymer
title_fullStr Experimental Studies on the Stability Assessment of a Levee Using Reinforced Soil Based on a Biopolymer
title_full_unstemmed Experimental Studies on the Stability Assessment of a Levee Using Reinforced Soil Based on a Biopolymer
title_sort experimental studies on the stability assessment of a levee using reinforced soil based on a biopolymer
publisher MDPI AG
series Water
issn 2073-4441
publishDate 2018-08-01
description Cement and other similar compounds have been used to prevent a levee breach during a flood. However, the demand is increasing for eco-friendly and sustainable alternatives to replace the conventional method for levee stabilization and strengthening. To improve the durability and environmental friendliness of a levee, the Andong River Experiment Center applied a biopolymer, which is a new eco-friendly substance, to fabricate a levee model, and conducted a hydraulic model experiment to evaluate the reliability and stability of the new type of levee. An image analysis was applied to calculate the scale of the breaches of the levee slopes. Based on the experimental results obtained, the characteristics of the breach between an earthen levee and the proposed levee were compared. The stability of the levee body was also evaluated according to the thickness of the new substance. The ultimate aim of this study was to derive the optimal conditions by verifying the performance and effectiveness of the new substance in terms of levee breach factors such as overflow, seepage, or piping in a series of hydraulic experiments. In the future, the field application of these optimal conditions will be verified through a real-scale experiment.
topic environment-friendly
biopolymer
river levee
overflow
levee breach
pixel-based analysis
stability assessment
url http://www.mdpi.com/2073-4441/10/8/1059
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