Mechanical Modelling and Computational Issues in Civil Engineering 1st Edition by Michel Fremond, Franco Maceri – Ebook PDF Instant Download/Delivery. 9783540323990 ,3540323996
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Product details:
ISBN 10: 3540323996
ISBN 13: 9783540323990
Author: Michel Fremond, Franco Maceri
Mechanical Modelling and Computational Issues in Civil Engineering 1st Edition Table of contents:
Part I: Fundamentals of Mechanical Modeling in Civil Engineering
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Introduction to Mechanical Modeling
- Role of Modeling in Civil Engineering
- Types of Models: Analytical, Numerical, and Experimental
- Objectives of Mechanical Modeling in Structural Engineering
- Simplifications and Assumptions in Modeling
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Basic Principles of Solid Mechanics
- Stress and Strain in Materials
- Constitutive Equations and Material Models
- Linear and Nonlinear Material Behavior
- Compatibility and Equilibrium Equations
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Elasticity and Plasticity in Civil Engineering
- Stress-Strain Relationships for Elastic Materials
- Elastic Moduli and Poisson’s Ratio
- Plasticity Theory and Yield Criteria
- Hardening and Softening Materials
- Application to Concrete and Steel
Part II: Structural Modeling Techniques
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Structural Systems and Behavior
- Types of Structural Systems in Civil Engineering
- Modeling of Beams, Frames, and Plates
- Displacement and Force-Based Formulations
- Stiffness and Flexibility Matrices
- Structural Stability and Buckling Analysis
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Finite Element Method (FEM) in Structural Modeling
- Introduction to the Finite Element Method
- Discretization of Structures: Elements and Nodes
- Formulation of the FEM Equations
- Solution Techniques: Direct and Iterative Solvers
- Applications of FEM in Structural Engineering
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Structural Dynamics and Vibration Analysis
- Vibration of Structures: Natural Frequencies and Mode Shapes
- Dynamic Response of Structures to Time-Dependent Loads
- Modal Analysis and Dynamic Stiffness Matrices
- Seismic Analysis and Earthquake Engineering
- Control of Structural Vibrations
Part III: Computational Techniques in Civil Engineering
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Numerical Methods in Structural Analysis
- Numerical Integration Techniques: Gauss Quadrature and Time-Stepping
- Solution of Linear Systems: Direct and Iterative Methods
- Nonlinear Analysis: Newton-Raphson and Other Methods
- Adaptive and Convergence Criteria in Computation
- Error Estimation and Model Validation
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Computational Fluid Dynamics (CFD) in Civil Engineering
- Basics of Fluid-Structure Interaction
- Modeling Fluid Flow in Civil Engineering Applications
- Navier-Stokes Equations and Turbulence Modeling
- Coupling Fluid and Structural Dynamics
- Applications: Water Resources and Hydraulic Engineering
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Multiscale Modeling in Civil Engineering
- Introduction to Multiscale Modeling
- Homogenization Techniques and Scale Bridging
- Modeling of Composite Materials and Heterogeneous Structures
- Coupling Different Length Scales in Structural Analysis
- Applications in Concrete, Geotechnical, and Material Science
Part IV: Advanced Topics and Emerging Issues
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Computational Challenges in Civil Engineering Modeling
- High-Performance Computing and Parallel Processing
- Optimization Techniques in Structural Design
- Large-Scale Simulations and Model Reduction
- Computational Complexity and Model Refinement
- Case Studies of Complex Structural Simulations
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Nonlinear and Time-Dependent Behavior of Structures
- Modeling Nonlinear Structural Materials: Concrete and Steel
- Time-Dependent Behavior: Creep, Shrinkage, and Relaxation
- Temperature Effects and Thermal Expansion
- Dynamic Load Response and Fatigue Analysis
- Advanced Material Models for Nonlinear Analysis
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Uncertainty Quantification and Reliability Analysis
- Sources of Uncertainty in Civil Engineering Models
- Stochastic Modeling and Monte Carlo Simulation
- Sensitivity Analysis and Propagation of Uncertainty
- Reliability-Based Design and Safety Factors
- Probabilistic Approaches in Structural Design
Part V: Practical Applications and Case Studies
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Modeling of Concrete Structures
- Modeling of Reinforced Concrete Behavior
- Cracking and Plasticity in Concrete Structures
- Finite Element Modeling of Concrete Frames
- Case Studies of Concrete Structural Analysis
- Seismic Design and Response of Concrete Structures
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Modeling in Geotechnical Engineering
- Soil-Structure Interaction and Foundation Modeling
- Modeling of Earthquake-Induced Soil Motion
- Finite Element Modeling of Geotechnical Systems
- Geotechnical Reliability and Safety Analysis
- Applications in Tunnels, Dams, and Foundations
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Applications in Transportation Infrastructure
- Modeling of Roads, Bridges, and Pavements
- Dynamic Response of Bridge Structures
- Modeling of Pavement Materials and Deflections
- Structural Health Monitoring of Infrastructure
- Simulation of Traffic-Induced Loads and Effects
Part VI: Future Directions and Emerging Technologies
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Future Trends in Mechanical Modeling and Computation
- Advances in Computational Power and Software
- Artificial Intelligence and Machine Learning in Modeling
- Real-Time Monitoring and Predictive Modeling
- Integration of Smart Materials in Structural Design
- Advances in Parametric and Procedural Modeling
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Concluding Remarks and Outlook for Civil Engineering
- Challenges and Opportunities in Civil Engineering Modeling
- Integrating Modeling, Experimentation, and Design
- Future Research Directions in Computational Civil Engineering
- The Role of Engineers in Modeling and Computational Design
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