
- 248 pages
- English
- PDF
- Available on iOS & Android
Computational Fluid Dynamics Simulations
About this book
Fluid flows are encountered in our daily life as well as in engineering industries. Identifying the temporal and spatial distribution of fluid dynamic properties is essential in analyzing the processes related to flows. These properties, such as velocity, turbulence, temperature, pressure, and concentration, play important roles in mass transfer, heat transfer, reaction rate, and force analysis. However, obtaining the analytical solution of these fluid property distributions is technically difficult or impossible. With the technique of finite difference methods or finite element methods, attaining numerical solutions from the partial differential equations of mass, momentum, and energy have become achievable. Therefore, computational fluid dynamics (CFD) has emerged and been widely applied in various fields. This book collects the recent studies that have applied the CFD technique in analyzing several representative processes covering mechanical engineering, chemical engineering, environmental engineering, and thermal engineering.
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Table of contents
- Computational Fluid Dynamics Simulations
- Contents
- Preface
- Section 1 - Basics of Computational Fluid Dynamics Simulation
- Chapter 1 - Calibration Methodology for CFD Models of Rooms and Buildings with Mechanical Ventilation from Experimental Results
- Chapter 2 - Scaling Investigation of Low Prandtl Number Flow and Double Diffusive Heat and Mass Transferover Inclined Walls
- Chapter 3 - Bingham Fluid Simulation in Porous Media with Lattice Boltzmann Method
- Chapter 4 - Interface Treatment for Conjugate Conditions in the Lattice Boltzmann Method for the Convection Diffusion Equation
- Section 2 - CFD Application in Chemical and Environmental Engineering
- Chapter 5 - Hydrodynamic Analysis on a Photocatalytic Reactor Using ANSYS Fluent®
- Chapter 6 - Computational Fluid Dynamics of Mixing Performance in Microchannel
- Chapter 7 - Numerical Modeling of Nanotechnology-Boosted Chemical Enhanced Oil Recovery Methods
- Section 3 - CFD Application in Mechanical Engineering
- Chapter 8 - Development of the Flight Dynamic Model (FDM) Using Computational Fluid Dynamic (CFD) Simulations for an Unknown Aircraft
- Chapter 9 - Computational Fluid Dynamic Simulation of Vertical Axis Hydrokinetic Turbines
- Chapter 10 - The Multiphase Flow CFD Analysis in Journal Bearings Considering Surface Tension and Oil-Filler Port Flow
- Section 4 - CFD Application in Thermal Engineering
- Chapter 11 - CFD Application for Gas Turbine Combustion Simulations