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    ACMEG-T: Soil Thermoplasticity Model

    Source: Journal of Engineering Mechanics:;2009:;Volume ( 135 ):;issue: 009
    Author:
    Lyesse Laloui
    ,
    Bertrand François
    DOI: 10.1061/(ASCE)EM.1943-7889.0000011
    Publisher: American Society of Civil Engineers
    Abstract: This paper addresses an advanced and unified thermomechanical constitutive model for soils. Based on experimental evidence showing the nonlinear and irreversible thermomechanical responses of saturated soils, the constitutive equations of the developed model, Advanced Constitutive Model for Environmental Geomechanics-Thermal effect (ACMEG-T), are presented. In the context of elastoplasticity and critical state theory, the model uses the multimechanism plasticity and bounding surface theory. Nonlinear thermoelasticity is joined with two coupled thermoplastic dissipative processes. The yield functions, the dissipative potentials and the plastic multipliers are introduced. Attention is particularly focused on the coupling between both plastic mechanisms, an isotropic and a deviatoric one, which are in agreement with the consistency condition for multiple dissipation. As far as isotropic mechanism is concerned, a unique thermomechanical yield surface reproduces the thermoplasticity observed at low and intermediate overconsolidation ratios, as well as the plasticity under mechanical loading in an framework unifying mechanical and thermal hardenings. Finally, the efficiency of ACMEG-T is proven by validation tests on drained and undrained thermomechanical paths.
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      ACMEG-T: Soil Thermoplasticity Model

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    contributor authorLyesse Laloui
    contributor authorBertrand François
    date accessioned2017-05-08T21:43:06Z
    date available2017-05-08T21:43:06Z
    date copyrightSeptember 2009
    date issued2009
    identifier other%28asce%29em%2E1943-7889%2E0000020.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/60467
    description abstractThis paper addresses an advanced and unified thermomechanical constitutive model for soils. Based on experimental evidence showing the nonlinear and irreversible thermomechanical responses of saturated soils, the constitutive equations of the developed model, Advanced Constitutive Model for Environmental Geomechanics-Thermal effect (ACMEG-T), are presented. In the context of elastoplasticity and critical state theory, the model uses the multimechanism plasticity and bounding surface theory. Nonlinear thermoelasticity is joined with two coupled thermoplastic dissipative processes. The yield functions, the dissipative potentials and the plastic multipliers are introduced. Attention is particularly focused on the coupling between both plastic mechanisms, an isotropic and a deviatoric one, which are in agreement with the consistency condition for multiple dissipation. As far as isotropic mechanism is concerned, a unique thermomechanical yield surface reproduces the thermoplasticity observed at low and intermediate overconsolidation ratios, as well as the plasticity under mechanical loading in an framework unifying mechanical and thermal hardenings. Finally, the efficiency of ACMEG-T is proven by validation tests on drained and undrained thermomechanical paths.
    publisherAmerican Society of Civil Engineers
    titleACMEG-T: Soil Thermoplasticity Model
    typeJournal Paper
    journal volume135
    journal issue9
    journal titleJournal of Engineering Mechanics
    identifier doi10.1061/(ASCE)EM.1943-7889.0000011
    treeJournal of Engineering Mechanics:;2009:;Volume ( 135 ):;issue: 009
    contenttypeFulltext
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