Grole General nonlinear continuum mechanics theory is used to develop small and large finite element formulations which correctly describe rigid body motion for use in engineering applications. Computational Continuum Mechanics, 3rd Edition. N2 — An updated and expanded edition of the popular guide to basic continuum mechanics and computational techniques This updated third edition of the popular reference covers state-of-the-art computational techniques for basic continuum mechanics modeling of both small and large deformations. Computational Continuum Mechanics, Third Xomputational is the only book to provide in-depth coverage of the formulations required to achieve this integration. Added to Your Shopping Cart. Shabana Limited preview — An updated and expanded edition of the popular guide to basic continuum mechanics and computational techniques This updated third edition of the popular reference covers state-of-the-art computational techniques for basic continuum mechanics modeling of both small and large deformations.

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Ahmed A Shabana This updated text presents the theory of continuum mechanics using computational methods. The text covers a broad range of topics including general problems of large rotation and large deformations and the development and limitations of finite element formulations in solving such problems.
Shabana introduces theories on motion kinematics, strain, forces, and stresses, and goes on to discuss linear and nonlinear constitutive equations, including viscoelastic and plastic constitutive models.
General nonlinear continuum mechanics theory is used to develop small and large finite element formulations which correctly describe rigid body motion for use in engineering applications.
This second edition features a new chapter that focuses on computational geometry and finite element analysis. It covers topics including general problems of large rotation and large deformations, the development of finite element formulations for such problems, and the limitations of existing finite element formulations. Machine generated contents note: 1. Introduction; 2. Kinematics; 3. Forces and stresses; 4. Constitutive equations; 5. Plasticity formulations; 6. Finite element formulations: large-deformation, large-rotation problem; 7.
Finite element formulation: small-deformation; large-rotation problem; 8. Computational geometry and finite element analysis Year:.
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