Numerical modeling of cyclic mobility based on fuzzy-set concepts in plasticity theory |
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Authors: | Yu Bao Stein Sture |
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Affiliation: | 1. Department of Civil Engineering Technology, Environmental Management and Safety, Rochester Institute of Technology, CST-3151, 78 Lomb Memorial Drive, Rochester, NY 14623-5603, USA;2. Regent Hall, 26 UCB, University of Colorado at Boulder, CO 80309-026, USA |
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Abstract: | In this paper, the application of an efficient, transparent and accurate kinematic-cyclic constitutive model based on the fuzzy-set concepts and incremental plasticity theory is presented to show its capability in modeling cyclic mobility of saturated granular soil. The nature and kinematic mechanism of the membership functions in the fuzzy-set constitutive model are illustrated. The model’s capability of modeling soil dilatancy is investigated. Important features of volume change and pore water pressure build-up related to soil cyclic mobility are captured. The formulation of the proposed model is relatively simple and it can be readily implemented in finite element codes. The enhanced fuzzy-set model is capable of simulating ground motion problems particularly related to cyclic mobility, soil liquefaction, and spreading behavior. |
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Keywords: | Cyclic mobility Fuzzy-set plasticity Soil dilatancy Constitutive modeling |
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