Geosynthetic tubes and mats : experimental and analytical studies

Geosynthetic tube has been widely used in projects for coastal protection, dike construction, flood control and dewatering waste sludge in many countries. In order to improve our understanding of the performances of geosynthetic tubes or mats and develop reliable design tools, both experimental and...

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Main Author: Guo, Wei
Other Authors: Chu Jian
Format: Theses and Dissertations
Language:English
Published: 2012
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Online Access:https://hdl.handle.net/10356/50785
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-507852023-03-03T19:34:06Z Geosynthetic tubes and mats : experimental and analytical studies Guo, Wei Chu Jian School of Civil and Environmental Engineering Centre for Infrastructure Systems Yan Shuwang DRNTU::Engineering::Civil engineering::Geotechnical Geosynthetic tube has been widely used in projects for coastal protection, dike construction, flood control and dewatering waste sludge in many countries. In order to improve our understanding of the performances of geosynthetic tubes or mats and develop reliable design tools, both experimental and analytical/numerical studies were carried out. Closed-form solutions for the design of water or slurry inflated impermeable geosynthetic tubes resting on rigid foundation were derived. With these solutions, the tensile force along the tube, the contact width with ground, the width, height, perimeter, and area of cross-section of a geosynthetic tube could easily be calculated even without considering the whole cross-section. Relatively large scale model tests using geosynthetic tubes of up to 4 m long and 2 m wide were carried out. The results of the closed-form solutions agreed well with the model test results. A so-called e-log p method was proposed for the analysis of geosynthetic tubes or mats on deformable foundation. This method was evaluated against numerical results using FLAC and compared with the existing method using Winkler foundation. The comparisons showed that the proposed e-log p method agreed better with the numerical results particularly when geosynthetic mat was analyzed. A new reinforced seaming method was developed to improve the seam efficiency of relatively weak geosynthetic sheets with seams. This so-called “RJ” method increased the seam efficiency from the normal 50% to over 75%. Theoretical methods for analyzing the cross-section and tensile forces at the end of filling and for calculating the deformation of the geosynthetic tubes during the dewatering process were proposed. The results of the theoretical methods agreed well with the model test results. To accelerate the dewatering process of waste sludge using permeable geosynthetic tubes, the existing stacking method was evaluated using model tests. A new method, the so-called vacuum method, was proposed to improve the dewater efficiency. The model test results showed that the vacuum method could not only accelerate the dewatering process, but also reduce the tensile strength of the geotextile used for the tube. Doctor of Philosophy (CEE) 2012-11-06T04:20:59Z 2012-11-06T04:20:59Z 2012 2012 Thesis Guo, W. (2012). Geosynthetic tubes and mats : experimental and analytical studies. Doctoral thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/50785 10.32657/10356/50785 en 388 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Civil engineering::Geotechnical
spellingShingle DRNTU::Engineering::Civil engineering::Geotechnical
Guo, Wei
Geosynthetic tubes and mats : experimental and analytical studies
description Geosynthetic tube has been widely used in projects for coastal protection, dike construction, flood control and dewatering waste sludge in many countries. In order to improve our understanding of the performances of geosynthetic tubes or mats and develop reliable design tools, both experimental and analytical/numerical studies were carried out. Closed-form solutions for the design of water or slurry inflated impermeable geosynthetic tubes resting on rigid foundation were derived. With these solutions, the tensile force along the tube, the contact width with ground, the width, height, perimeter, and area of cross-section of a geosynthetic tube could easily be calculated even without considering the whole cross-section. Relatively large scale model tests using geosynthetic tubes of up to 4 m long and 2 m wide were carried out. The results of the closed-form solutions agreed well with the model test results. A so-called e-log p method was proposed for the analysis of geosynthetic tubes or mats on deformable foundation. This method was evaluated against numerical results using FLAC and compared with the existing method using Winkler foundation. The comparisons showed that the proposed e-log p method agreed better with the numerical results particularly when geosynthetic mat was analyzed. A new reinforced seaming method was developed to improve the seam efficiency of relatively weak geosynthetic sheets with seams. This so-called “RJ” method increased the seam efficiency from the normal 50% to over 75%. Theoretical methods for analyzing the cross-section and tensile forces at the end of filling and for calculating the deformation of the geosynthetic tubes during the dewatering process were proposed. The results of the theoretical methods agreed well with the model test results. To accelerate the dewatering process of waste sludge using permeable geosynthetic tubes, the existing stacking method was evaluated using model tests. A new method, the so-called vacuum method, was proposed to improve the dewater efficiency. The model test results showed that the vacuum method could not only accelerate the dewatering process, but also reduce the tensile strength of the geotextile used for the tube.
author2 Chu Jian
author_facet Chu Jian
Guo, Wei
format Theses and Dissertations
author Guo, Wei
author_sort Guo, Wei
title Geosynthetic tubes and mats : experimental and analytical studies
title_short Geosynthetic tubes and mats : experimental and analytical studies
title_full Geosynthetic tubes and mats : experimental and analytical studies
title_fullStr Geosynthetic tubes and mats : experimental and analytical studies
title_full_unstemmed Geosynthetic tubes and mats : experimental and analytical studies
title_sort geosynthetic tubes and mats : experimental and analytical studies
publishDate 2012
url https://hdl.handle.net/10356/50785
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