Theoretical and Experimental Substantiation for Applicability of a Damping Layer in a Foundation Slab Placed on Soil Bed

Authors present the results of studies of innovative foundation structure. The idea of how to increase the operational quality of foundations and reduce the costs due to rational loading of the soil bed is numerically simulated. It is shown that the bending moment in the foundation slab depends on u...

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Main Authors: Kiselev Nikita, Pronozin Yakov, Stepanov Maxim, Bartolomey Leonid, Keck Dietmar
Format: Article
Language:English
Published: EDP Sciences 2016-01-01
Series:MATEC Web of Conferences
Online Access:http://dx.doi.org/10.1051/matecconf/20167301017
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spelling doaj-274ce739a07c41d6ad60d98435b80afc2021-02-02T01:05:03ZengEDP SciencesMATEC Web of Conferences2261-236X2016-01-01730101710.1051/matecconf/20167301017matecconf_tpacee2016_01017Theoretical and Experimental Substantiation for Applicability of a Damping Layer in a Foundation Slab Placed on Soil BedKiselev Nikita0Pronozin Yakov1Stepanov Maxim2Bartolomey Leonid3Keck Dietmar4Industrial University of TyumenIndustrial University of TyumenIndustrial University of TyumenIndustrial University of TyumenIndustrial University of TyumenAuthors present the results of studies of innovative foundation structure. The idea of how to increase the operational quality of foundations and reduce the costs due to rational loading of the soil bed is numerically simulated. It is shown that the bending moment in the foundation slab depends on uneven settlements of the soil bed. It is proposed to stabilize the deformable soil bed by the damping layer placed under the slab footing in the zones with minor settlements. Considered is the concept of the damping layer in the foundation slab placed on the soil bed (DLS). The in-situ test for DLS-clayey bed interaction is described. Given are the results obtained after the experiments for DLS performance. The result of DLS implementation in designing the foundation of the 22-storeyed block of flats is considered. The expediency of DLS in comparison to standard foundations is presented.http://dx.doi.org/10.1051/matecconf/20167301017
collection DOAJ
language English
format Article
sources DOAJ
author Kiselev Nikita
Pronozin Yakov
Stepanov Maxim
Bartolomey Leonid
Keck Dietmar
spellingShingle Kiselev Nikita
Pronozin Yakov
Stepanov Maxim
Bartolomey Leonid
Keck Dietmar
Theoretical and Experimental Substantiation for Applicability of a Damping Layer in a Foundation Slab Placed on Soil Bed
MATEC Web of Conferences
author_facet Kiselev Nikita
Pronozin Yakov
Stepanov Maxim
Bartolomey Leonid
Keck Dietmar
author_sort Kiselev Nikita
title Theoretical and Experimental Substantiation for Applicability of a Damping Layer in a Foundation Slab Placed on Soil Bed
title_short Theoretical and Experimental Substantiation for Applicability of a Damping Layer in a Foundation Slab Placed on Soil Bed
title_full Theoretical and Experimental Substantiation for Applicability of a Damping Layer in a Foundation Slab Placed on Soil Bed
title_fullStr Theoretical and Experimental Substantiation for Applicability of a Damping Layer in a Foundation Slab Placed on Soil Bed
title_full_unstemmed Theoretical and Experimental Substantiation for Applicability of a Damping Layer in a Foundation Slab Placed on Soil Bed
title_sort theoretical and experimental substantiation for applicability of a damping layer in a foundation slab placed on soil bed
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2016-01-01
description Authors present the results of studies of innovative foundation structure. The idea of how to increase the operational quality of foundations and reduce the costs due to rational loading of the soil bed is numerically simulated. It is shown that the bending moment in the foundation slab depends on uneven settlements of the soil bed. It is proposed to stabilize the deformable soil bed by the damping layer placed under the slab footing in the zones with minor settlements. Considered is the concept of the damping layer in the foundation slab placed on the soil bed (DLS). The in-situ test for DLS-clayey bed interaction is described. Given are the results obtained after the experiments for DLS performance. The result of DLS implementation in designing the foundation of the 22-storeyed block of flats is considered. The expediency of DLS in comparison to standard foundations is presented.
url http://dx.doi.org/10.1051/matecconf/20167301017
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AT pronozinyakov theoreticalandexperimentalsubstantiationforapplicabilityofadampinglayerinafoundationslabplacedonsoilbed
AT stepanovmaxim theoreticalandexperimentalsubstantiationforapplicabilityofadampinglayerinafoundationslabplacedonsoilbed
AT bartolomeyleonid theoreticalandexperimentalsubstantiationforapplicabilityofadampinglayerinafoundationslabplacedonsoilbed
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