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Multi-physical and Non-orthogonal Geotechnical Plasticity Modeling and Algorithms / by Dechun Lu, Xin Zhou, Jingyu Liang, Xiuli Du.

Springer eBooks EBA - Earth & Environmental Science Collection 2025 Available online

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Format:
Book
Author/Creator:
Lu, Dechun., Author.
Zhou, Xin, Author.
Liang, Jingyu, Author.
Du, Xiuli, Author.
Series:
Earth and Environmental Science Series
Language:
English
Subjects (All):
Engineering geology.
Geotechnical engineering.
Geoengineering.
Geotechnical Engineering and Applied Earth Sciences.
Local Subjects:
Geoengineering.
Geotechnical Engineering and Applied Earth Sciences.
Physical Description:
1 online resource (XI, 298 p. 184 illus., 163 illus. in color.)
Edition:
1st ed. 2025.
Place of Publication:
Singapore : Springer Nature Singapore : Imprint: Springer, 2025.
Summary:
This book primarily introduces innovative multi-physical plastic modeling for geomaterials in unsteady environments and advanced numerical methods for elastoplastic models, topics not systematically covered in other literature. The constitutive models in the form of stress-strain-environment will be interesting to students and researchers in geotechnical engineering and rock and soil mechanics. The book provides a thorough exploration of modeling techniques and algorithmic flowcharts, facilitating a deeper understanding of both theoretical models and numerical methods. It also guides readers in applying these tools to describe the mechanical behavior of geomaterials in various unsteady environments and addresses computational challenges in elastoplastic numerical analysis.
Contents:
Introduction
Non-orthogonal plastic theory in unsteady environments
Non-orthogonal elastoplastic model for soil in the steady environment
Non-orthogonal elastoplastic model for soil in the unsteady water environment
Non orthogonal plastic damage model of concrete
Non-orthogonal elastoplastic model for concrete in the variable strain rate environment
Unconstrained stress update algorithm for elastoplastic models
Stress update algorithm based on numerical optimization methods
Stress update algorithm based on numerical differentiation methods
Stress update algorithm based on integral nonlocal method.
Notes:
Description based on publisher supplied metadata and other sources.
ISBN:
981-9623-69-3
OCLC:
1524420367

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