Dynamics Coefficient for Two-Phase Soil Model

The paper investigates a description of energy dissipation within saturated soils-diffusion of pore-water. Soils are assumed to be two-phase poro-elastic materials, the grain skeleton of which exhibits no irreversible behavior or structural hysteretic damping. Description of motion and deformation o...

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Main Author: Wrana Bogumił
Format: Article
Language:English
Published: Sciendo 2015-02-01
Series:Studia Geotechnica et Mechanica
Subjects:
Online Access:http://www.degruyter.com/view/j/sgem.2014.36.issue-2/sgem-2014-0020/sgem-2014-0020.xml?format=INT
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spelling doaj-b0aac302d1c348fb85ffef616b08f1342020-11-24T23:12:56ZengSciendoStudia Geotechnica et Mechanica0137-63652083-831X2015-02-01362515610.2478/sgem-2014-0020sgem-2014-0020Dynamics Coefficient for Two-Phase Soil ModelWrana Bogumił0Cracow University of Technology, Faculty of Civil Engineering, Kraków, PolandThe paper investigates a description of energy dissipation within saturated soils-diffusion of pore-water. Soils are assumed to be two-phase poro-elastic materials, the grain skeleton of which exhibits no irreversible behavior or structural hysteretic damping. Description of motion and deformation of soil is introduced as a system of equations consisting of governing dynamic consolidation equations based on Biot theory. Selected constitutive and kinematic relations for small strains and rotation are used. This paper derives a closed form of analytical solution that characterizes the energy dissipation during steady-state vibrations of nearly and fully saturated poro-elastic columns. Moreover, the paper examines the influence of various physical factors on the fundamental period, maximum amplitude and the fraction of critical damping of the Biot column. Also the so-called dynamic coefficient which shows amplification or attenuation of dynamic response is considered.http://www.degruyter.com/view/j/sgem.2014.36.issue-2/sgem-2014-0020/sgem-2014-0020.xml?format=INTdynamic consolidationBiot theorydynamicstwo-phase soil model
collection DOAJ
language English
format Article
sources DOAJ
author Wrana Bogumił
spellingShingle Wrana Bogumił
Dynamics Coefficient for Two-Phase Soil Model
Studia Geotechnica et Mechanica
dynamic consolidation
Biot theory
dynamics
two-phase soil model
author_facet Wrana Bogumił
author_sort Wrana Bogumił
title Dynamics Coefficient for Two-Phase Soil Model
title_short Dynamics Coefficient for Two-Phase Soil Model
title_full Dynamics Coefficient for Two-Phase Soil Model
title_fullStr Dynamics Coefficient for Two-Phase Soil Model
title_full_unstemmed Dynamics Coefficient for Two-Phase Soil Model
title_sort dynamics coefficient for two-phase soil model
publisher Sciendo
series Studia Geotechnica et Mechanica
issn 0137-6365
2083-831X
publishDate 2015-02-01
description The paper investigates a description of energy dissipation within saturated soils-diffusion of pore-water. Soils are assumed to be two-phase poro-elastic materials, the grain skeleton of which exhibits no irreversible behavior or structural hysteretic damping. Description of motion and deformation of soil is introduced as a system of equations consisting of governing dynamic consolidation equations based on Biot theory. Selected constitutive and kinematic relations for small strains and rotation are used. This paper derives a closed form of analytical solution that characterizes the energy dissipation during steady-state vibrations of nearly and fully saturated poro-elastic columns. Moreover, the paper examines the influence of various physical factors on the fundamental period, maximum amplitude and the fraction of critical damping of the Biot column. Also the so-called dynamic coefficient which shows amplification or attenuation of dynamic response is considered.
topic dynamic consolidation
Biot theory
dynamics
two-phase soil model
url http://www.degruyter.com/view/j/sgem.2014.36.issue-2/sgem-2014-0020/sgem-2014-0020.xml?format=INT
work_keys_str_mv AT wranabogumił dynamicscoefficientfortwophasesoilmodel
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