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This book provides readers with a comprehensive treatment of computer methods and constitutive models that they can use for teaching, research, and solving a wide range of practical problems in geotechnical engineering and geomechanics. It discusses factors such as in-situ conditions, elastic, plastic and creep deformations, stress path, volume change, existence of fluids (water), non-homogeneities, inherent and induced discontinuities or microcracking leading to softening and failure, and types of loading such as static, repetitive and dynamic.
Examines both structural analysis and flow applications in a presentation designed for upper-level undergraduate and beginning graduate students, both within and outside of the engineering disciplines. This book includes a chapter on variational calculus, that shows how the functionals for structural analysis and flow problems are formulated.
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