Simulation of the influence of dynamic loading on the stress-strain state of the natural and geoengineering environment

The paper provides numerical simulation of the influence of dynamic loading on the stress-strain state of the natural and geoengineering technogenic environment taking into account the soil basis for forecasting its use as the basis of the structure. Paper demonstrates the impact of static and dynam...

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Main Authors: Remez Natalya, Dychko Alina, Bronytskyi Vadym, Hrebeniuk Tetiana, Bambirra Pereira Rafael, Ekel Petr
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/56/e3sconf_icsf2021_01008.pdf
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spelling doaj-5d1857ccbd78498a808f65a9f37e06362021-07-07T11:34:17ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012800100810.1051/e3sconf/202128001008e3sconf_icsf2021_01008Simulation of the influence of dynamic loading on the stress-strain state of the natural and geoengineering environmentRemez Natalya0Dychko Alina1Bronytskyi Vadym2Hrebeniuk Tetiana3Bambirra Pereira Rafael4Ekel Petr5Igor Sikorsky Kyiv Polytechnic Institute, Geoengineering DepartmentIgor Sikorsky Kyiv Polytechnic Institute, Geoengineering DepartmentIgor Sikorsky Kyiv Polytechnic Institute, Geoengineering DepartmentIgor Sikorsky Kyiv Polytechnic Institute, Geoengineering DepartmentASOTECH, Advanced System Optimization Technologies Ltd.ASOTECH, Advanced System Optimization Technologies Ltd.The paper provides numerical simulation of the influence of dynamic loading on the stress-strain state of the natural and geoengineering technogenic environment taking into account the soil basis for forecasting its use as the basis of the structure. Paper demonstrates the impact of static and dynamic loading on the subsidence of the landfill. To take into account the liquid phase of the waste and the viscoplastic medium, Darcy's law is used as an equation of balance of forces. The body of the landfill is modeled by weak soil taking into account the creep, using the Soft Soil Creep model. The covering and underlying soil layers are described by the Coulomb – Mohr model. An effective method for calculating the sedimentation of natural and geoengineering environment on the example of a solid waste landfill, based on numerical modeling of the stress-strain state of the landfill and underlying soil using finite elements is developed. It is demonstrated that the largest subsidence is experienced by the landfill with sand, as the base soil, but in percentage terms the amount of subsidence with the maximum load relative to the initial subsidence without loading is the largest in clay (33.7%). The obtained results must be taken into account when using landfills as a basis for buildings, structures, routes, recreational areas, etc.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/56/e3sconf_icsf2021_01008.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Remez Natalya
Dychko Alina
Bronytskyi Vadym
Hrebeniuk Tetiana
Bambirra Pereira Rafael
Ekel Petr
spellingShingle Remez Natalya
Dychko Alina
Bronytskyi Vadym
Hrebeniuk Tetiana
Bambirra Pereira Rafael
Ekel Petr
Simulation of the influence of dynamic loading on the stress-strain state of the natural and geoengineering environment
E3S Web of Conferences
author_facet Remez Natalya
Dychko Alina
Bronytskyi Vadym
Hrebeniuk Tetiana
Bambirra Pereira Rafael
Ekel Petr
author_sort Remez Natalya
title Simulation of the influence of dynamic loading on the stress-strain state of the natural and geoengineering environment
title_short Simulation of the influence of dynamic loading on the stress-strain state of the natural and geoengineering environment
title_full Simulation of the influence of dynamic loading on the stress-strain state of the natural and geoengineering environment
title_fullStr Simulation of the influence of dynamic loading on the stress-strain state of the natural and geoengineering environment
title_full_unstemmed Simulation of the influence of dynamic loading on the stress-strain state of the natural and geoengineering environment
title_sort simulation of the influence of dynamic loading on the stress-strain state of the natural and geoengineering environment
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description The paper provides numerical simulation of the influence of dynamic loading on the stress-strain state of the natural and geoengineering technogenic environment taking into account the soil basis for forecasting its use as the basis of the structure. Paper demonstrates the impact of static and dynamic loading on the subsidence of the landfill. To take into account the liquid phase of the waste and the viscoplastic medium, Darcy's law is used as an equation of balance of forces. The body of the landfill is modeled by weak soil taking into account the creep, using the Soft Soil Creep model. The covering and underlying soil layers are described by the Coulomb – Mohr model. An effective method for calculating the sedimentation of natural and geoengineering environment on the example of a solid waste landfill, based on numerical modeling of the stress-strain state of the landfill and underlying soil using finite elements is developed. It is demonstrated that the largest subsidence is experienced by the landfill with sand, as the base soil, but in percentage terms the amount of subsidence with the maximum load relative to the initial subsidence without loading is the largest in clay (33.7%). The obtained results must be taken into account when using landfills as a basis for buildings, structures, routes, recreational areas, etc.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/56/e3sconf_icsf2021_01008.pdf
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