Acoustic measurements of a liquefied cohesive sediment bed under waves

In this article the response of a cohesive sediment deposit under the action of water waves is studied with the help of laboratory experiments and an analytical model. Under the same regular wave condition three different bed responses were observed depending on the degree of consolidation of the d...

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Main Authors: R. Mosquera, V. Groposo, F. Pedocchi
Format: Article
Language:English
Published: Copernicus Publications 2014-04-01
Series:Advances in Geosciences
Online Access:http://www.adv-geosci.net/39/1/2014/adgeo-39-1-2014.pdf
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spelling doaj-78b81af9bb244fafb6d5db38ef1960932020-11-24T22:23:54ZengCopernicus PublicationsAdvances in Geosciences1680-73401680-73592014-04-01391710.5194/adgeo-39-1-2014Acoustic measurements of a liquefied cohesive sediment bed under wavesR. Mosquera0V. Groposo1F. Pedocchi2Instituto de Mecánica de los Fluidos e Ingeniería Ambiental (IMFIA), Facultad de Ingeniería, Universidad de la República, Montevideo, UruguayInstituto de Mecánica de los Fluidos e Ingeniería Ambiental (IMFIA), Facultad de Ingeniería, Universidad de la República, Montevideo, UruguayInstituto de Mecánica de los Fluidos e Ingeniería Ambiental (IMFIA), Facultad de Ingeniería, Universidad de la República, Montevideo, UruguayIn this article the response of a cohesive sediment deposit under the action of water waves is studied with the help of laboratory experiments and an analytical model. Under the same regular wave condition three different bed responses were observed depending on the degree of consolidation of the deposit: no bed motion, bed motion of the upper layer after the action of the first waves, and massive bed motion after several waves. The kinematic of the upper 3 cm of the deposit were measured with an ultrasound acoustic profiler, while the pore-water pressure inside the bed was simultaneously measured using several pore pressure sensors. A poro-elastic model was developed to interpret the experimental observations. The model showed that the amplitude of the shear stress increased down into the bed. Then it is possible that the lower layers of the deposit experience plastic deformations, while the upper layers present just elastic deformations. Since plastic deformations in the lower layers are necessary for pore pressure build-up, the analytical model was used to interpret the experimental results and to state that liquefaction of a self consolidated cohesive sediment bed would only occur if the bed yield stress falls within the range defined by the amplitude of the shear stress inside the bed.http://www.adv-geosci.net/39/1/2014/adgeo-39-1-2014.pdf
collection DOAJ
language English
format Article
sources DOAJ
author R. Mosquera
V. Groposo
F. Pedocchi
spellingShingle R. Mosquera
V. Groposo
F. Pedocchi
Acoustic measurements of a liquefied cohesive sediment bed under waves
Advances in Geosciences
author_facet R. Mosquera
V. Groposo
F. Pedocchi
author_sort R. Mosquera
title Acoustic measurements of a liquefied cohesive sediment bed under waves
title_short Acoustic measurements of a liquefied cohesive sediment bed under waves
title_full Acoustic measurements of a liquefied cohesive sediment bed under waves
title_fullStr Acoustic measurements of a liquefied cohesive sediment bed under waves
title_full_unstemmed Acoustic measurements of a liquefied cohesive sediment bed under waves
title_sort acoustic measurements of a liquefied cohesive sediment bed under waves
publisher Copernicus Publications
series Advances in Geosciences
issn 1680-7340
1680-7359
publishDate 2014-04-01
description In this article the response of a cohesive sediment deposit under the action of water waves is studied with the help of laboratory experiments and an analytical model. Under the same regular wave condition three different bed responses were observed depending on the degree of consolidation of the deposit: no bed motion, bed motion of the upper layer after the action of the first waves, and massive bed motion after several waves. The kinematic of the upper 3 cm of the deposit were measured with an ultrasound acoustic profiler, while the pore-water pressure inside the bed was simultaneously measured using several pore pressure sensors. A poro-elastic model was developed to interpret the experimental observations. The model showed that the amplitude of the shear stress increased down into the bed. Then it is possible that the lower layers of the deposit experience plastic deformations, while the upper layers present just elastic deformations. Since plastic deformations in the lower layers are necessary for pore pressure build-up, the analytical model was used to interpret the experimental results and to state that liquefaction of a self consolidated cohesive sediment bed would only occur if the bed yield stress falls within the range defined by the amplitude of the shear stress inside the bed.
url http://www.adv-geosci.net/39/1/2014/adgeo-39-1-2014.pdf
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