Low-amplitude dynamic tests of fine gravel in a resonant column

Construction of industrial and civil buildings, taking into account the dynamic effects on the foundations, requires special experiments on the mechanical properties of soils. This article presents the results of studying the dynamic properties of coarse gravelly soils using the resonant column meth...

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Main Authors: Ter-Martirosyan Zaven, Sobolev Evgeny, Anzhelo George
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/23/e3sconf_form2018_04024.pdf
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spelling doaj-169deba6e28842eaa176230cfc82c49d2021-03-02T10:51:52ZengEDP SciencesE3S Web of Conferences2267-12422019-01-01970402410.1051/e3sconf/20199704024e3sconf_form2018_04024Low-amplitude dynamic tests of fine gravel in a resonant columnTer-Martirosyan ZavenSobolev EvgenyAnzhelo GeorgeConstruction of industrial and civil buildings, taking into account the dynamic effects on the foundations, requires special experiments on the mechanical properties of soils. This article presents the results of studying the dynamic properties of coarse gravelly soils using the resonant column method. These studies are relevant, since the determination of the dynamic properties of coarse-grained soils under laboratory conditions is associated with a restriction on the size of the fractions in the sample volume. This circumstance leads to the fact that at the moment most of the laboratory tests of the dynamic properties of coarse-grained soils are performed on smaller aggregate fractions, which, in general, significantly reduces the resulting mechanical properties of soils. It does not reflect the real operation of the foundation of buildings during dynamic effects. This paper presents a description of the available laboratory equipment, the sequence of preparation of samples of coarse grained crushed stone soil and sample assembly in the working chamber of the installation. The article contains the main graphs characterizing the change in shear modulus and damping coefficient depending on shear deformations. It is noted that the results obtained are particularly relevant for modeling the dynamic effects of natural and man-made character on the foundations of industrial and civil buildings, the bases of which are composed of coarse-grained soils. Dynamic parameters considered in this paper, can and must be used in numerical calculations by finite element method with the use of modern groundwater models in geotechnical software systems.https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/23/e3sconf_form2018_04024.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Ter-Martirosyan Zaven
Sobolev Evgeny
Anzhelo George
spellingShingle Ter-Martirosyan Zaven
Sobolev Evgeny
Anzhelo George
Low-amplitude dynamic tests of fine gravel in a resonant column
E3S Web of Conferences
author_facet Ter-Martirosyan Zaven
Sobolev Evgeny
Anzhelo George
author_sort Ter-Martirosyan Zaven
title Low-amplitude dynamic tests of fine gravel in a resonant column
title_short Low-amplitude dynamic tests of fine gravel in a resonant column
title_full Low-amplitude dynamic tests of fine gravel in a resonant column
title_fullStr Low-amplitude dynamic tests of fine gravel in a resonant column
title_full_unstemmed Low-amplitude dynamic tests of fine gravel in a resonant column
title_sort low-amplitude dynamic tests of fine gravel in a resonant column
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2019-01-01
description Construction of industrial and civil buildings, taking into account the dynamic effects on the foundations, requires special experiments on the mechanical properties of soils. This article presents the results of studying the dynamic properties of coarse gravelly soils using the resonant column method. These studies are relevant, since the determination of the dynamic properties of coarse-grained soils under laboratory conditions is associated with a restriction on the size of the fractions in the sample volume. This circumstance leads to the fact that at the moment most of the laboratory tests of the dynamic properties of coarse-grained soils are performed on smaller aggregate fractions, which, in general, significantly reduces the resulting mechanical properties of soils. It does not reflect the real operation of the foundation of buildings during dynamic effects. This paper presents a description of the available laboratory equipment, the sequence of preparation of samples of coarse grained crushed stone soil and sample assembly in the working chamber of the installation. The article contains the main graphs characterizing the change in shear modulus and damping coefficient depending on shear deformations. It is noted that the results obtained are particularly relevant for modeling the dynamic effects of natural and man-made character on the foundations of industrial and civil buildings, the bases of which are composed of coarse-grained soils. Dynamic parameters considered in this paper, can and must be used in numerical calculations by finite element method with the use of modern groundwater models in geotechnical software systems.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/23/e3sconf_form2018_04024.pdf
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AT anzhelogeorge lowamplitudedynamictestsoffinegravelinaresonantcolumn
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