Performance of nonwoven geotextiles on soil drainage and filtration

The selection of a geotextile to prevent the soil suffusion in a civil engineering work is a classical problem. The internal erosion is a key factor as the migration of fine particles damages the integrity of the soil structure. This work deals with the problem of using a draining system consisting...

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Published inEuropean journal of environmental and civil engineering Vol. 24; no. 5; pp. 670 - 688
Main Authors Sabiri, Nour-Eddine, Caylet, Adeline, Montillet, Agnès, Le Coq, Laurence, Durkheim, Yves
Format Journal Article
LanguageEnglish
Published Taylor & Francis 15.04.2020
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Abstract The selection of a geotextile to prevent the soil suffusion in a civil engineering work is a classical problem. The internal erosion is a key factor as the migration of fine particles damages the integrity of the soil structure. This work deals with the problem of using a draining system consisting of a layer of soil and a geotextile sheet in order to prevent soil suffusion. It proposes a methodology which allows ordering the performance of nonwoven geotextiles. A range of experimental approaches were implemented including seepage flow tests under controlled flow rates. A detailed analysis of the data shows that intrinsic properties of geotextiles are not sufficient to predict their behaviour in a draining system. Moreover, the classical flow tests of the draining systems are not sufficient to adequately discriminate the three geotextile specimen used here. On the other hand, it seems important to use the history of the hydraulic gradient with respect to the flow rate variation. Thus, the present data of normalised relative pressure drop and normalised relative variation of flow rate are arranged in terms of a dimensionless criterion. This methodology enables evaluating and discriminating the performances of the geotextiles used here in terms of filtration and drainage functions.
AbstractList The selection of a geotextile to prevent the soil suffusion in a civil engineering work is a classical problem. The internal erosion is a key factor as the migration of fine particles damages the integrity of the soil structure. This work deals with the problem of using a draining system consisting of a layer of soil and a geotextile sheet in order to prevent soil suffusion. It proposes a methodology which allows ordering the performance of nonwoven geotextiles. A range of experimental approaches were implemented including seepage flow tests under controlled flow rates. A detailed analysis of the data shows that intrinsic properties of geotextiles are not sufficient to predict their behaviour in a draining system. Moreover, the classical flow tests of the draining systems are not sufficient to adequately discriminate the three geotextile specimen used here. On the other hand, it seems important to use the history of the hydraulic gradient with respect to the flow rate variation. Thus, the present data of normalised relative pressure drop and normalised relative variation of flow rate are arranged in terms of a dimensionless criterion. This methodology enables evaluating and discriminating the performances of the geotextiles used here in terms of filtration and drainage functions.
Author Durkheim, Yves
Sabiri, Nour-Eddine
Montillet, Agnès
Le Coq, Laurence
Caylet, Adeline
Author_xml – sequence: 1
  givenname: Nour-Eddine
  surname: Sabiri
  fullname: Sabiri, Nour-Eddine
  email: nour-eddine.sabiri@univ-nantes.fr
  organization: Université de Nantes, GEPEA, UMR-CNRS 6144
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  givenname: Adeline
  surname: Caylet
  fullname: Caylet, Adeline
  organization: Université de Bretagne Sud, FRE CNRS 3744, IRDL
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  givenname: Agnès
  surname: Montillet
  fullname: Montillet, Agnès
  organization: Université de Nantes, GEPEA, UMR-CNRS 6144
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  givenname: Laurence
  surname: Le Coq
  fullname: Le Coq, Laurence
  organization: Université de Nantes, GEPEA, UMR-CNRS 6144
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  givenname: Yves
  surname: Durkheim
  fullname: Durkheim, Yves
  organization: AFITEX
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Issue 5
Keywords porous media and structural parameters
filtration
efficiency
drainage
Geotextile
Language English
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Snippet The selection of a geotextile to prevent the soil suffusion in a civil engineering work is a classical problem. The internal erosion is a key factor as the...
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SubjectTerms Civil Engineering
drainage
efficiency
Engineering Sciences
filtration
Geotextile
Géotechnique
Materials
porous media and structural parameters
Title Performance of nonwoven geotextiles on soil drainage and filtration
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