Mathematics is a universal language. Differential equations, mathematical modeling, numerical methods and computation form the underlying infrastructure of engineering and the sciences. In this context mathematical modeling is a very powerful tool for studying engineering problems, natural systems and human society. This interdisciplinary book cont

eBook - PDF
Numerical Modeling of Coupled Phenomena in Science and Engineering
Practical Use and Examples
- 496 pages
- English
- PDF
- Available on iOS & Android
eBook - PDF
Numerical Modeling of Coupled Phenomena in Science and Engineering
Practical Use and Examples
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Table of contents
- Front cover
- About the book series
- Editorial board of the book series
- Table of Contents
- Acknowledgements
- Preface
- Authors’ CVs by Chapter
- Part 1: Computational mathematics, modeling and numerical methods
- CHAPTER 1. Mathematical and computational modeling in Mexico
- CHAPTER 2. Numerical solution of boundary inverse problems for orthotropic solids
- CHAPTER 3. Reliable numerical solutions for random differential systems
- CHAPTER 4. Area functionals for high quality grid generation
- CHAPTER 5. Multi-objective topological optimization of structures
- CHAPTER 6. Some patterns in primes and their possible applications as quasi-Monte Carlo methods in multivariable integration
- CHAPTER 7. Comparison between discrete and continuous Schrödinger operators with a small potential well
- CHAPTER 8. Enhanced finite elements: A unified approach
- Part 2: Coupled problems in fluid-structure interactions and in heat transfer
- CHAPTER 9. Simulation of structural response to violent-free surface flows
- CHAPTER 10. Fluid structure interaction and proper orthogonal decomposition (POD) method
- CHAPTER 11. Numerical models for simulation of the seismic behavior of RC structures—A case study
- CHAPTER 12. Numerical modeling of wave phenomena (refraction-diffraction) applied to breakwaters of the cooling water intake of Laguna Verde nuclear power plant in Veracruz, Mexico
- CHAPTER 13. Computer simulations of open-cell foams thermo-conductivity properties
- CHAPTER 14. Numerical simulation of a basic steelmaking furnace
- CHAPTER 15. Unsteady natural convection in interconnected systems
- CHAPTER 16. Dynamic-thermal-structural analysis of a gas turbine blade with internal cooling
- CHAPTER 17. Transient analysis of a geothermal snow-melting system on a typical bridge
- Part 3: Computational mechanics of fluids and solids, multiphysics, biomechanics
- CHAPTER 18. Fast calculation of electro- and thermo-static fields in 3D-medium with an isolated heterogeneous inclusion using Gaussian approximating functions and application of FFT
- CHAPTER 19. Analytic-numerical approach of the equations to simulate wave amplitude attenuation in silencers of exhaust systems of internal combustion engines
- CHAPTER 20. Adaptive FE limit analysis bounds approach to the computation of the limit load in plane stress
- CHAPTER 21. Probability density functions from patterns in primes’ indices—Perspectives of usage as a quasi-Monte Carlo method
- CHAPTER 22. An arterial element for modeling vascular flow
- Part 4: Flow of mass and energy in porous media
- CHAPTER 23. 3D analytical solutions for transport in a double porosity media
- CHAPTER 24. Systematic formulation of continuum systems: Theoretical modeling of combustion fronts in porous media
- CHAPTER 25. Trefftz-Herrera collocation method: Numerical modeling of combustion fronts in porous media
- CHAPTER 26. The integrated finite difference method (IFD), applied to simulate groundwater flow in the aquifer of Morelia, Michoacán, Mexico
- CHAPTER 27. Numerical modeling of the coupled flow of brine and oil in hydrocarbon reservoirs
- Part 5: Boundary elements, spectral and meshless methods, numerical optimization
- CHAPTER 28. A novel boundary element multiscale method for damage modeling
- CHAPTER 29. A formulation based on the localized Lagrange multipliers for solving 3D frictional contact problems using the BEM
- CHAPTER 30. Spectral methods in third-order differential operators
- CHAPTER 31. Wave propagation in a biphasic fluid-solid media, with a pseudo-spectral FD scheme
- CHAPTER 32. A numerical particle method for the simulation of mass flows in volcanoes
- CHAPTER 33. The car traffic problem to evacuate people in the Popocatépetl volcano
- CHAPTER 34. Numeric optimization of the hydrodynamic model YAXUM/3D
- CHAPTER 35. Calculating the outline of a petal tool for polishing optical surfaces using linear programming
- Subject index
- Author index
- Back cover
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Yes, you can access Numerical Modeling of Coupled Phenomena in Science and Engineering by Mario César Suárez Arriaga, Jochen Bundschuh, Francisco Javier Dominguez-Mota, Mario César Suárez Arriaga,Jochen Bundschuh,Francisco Javier Dominguez-Mota in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Civil Engineering. We have over 1.5 million books available in our catalogue for you to explore.