Fundamentals
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Köp båda 2 för 3560 krIbrahim Dincer is a Professor at the Department of Automotive, Mechanical and Manufacturing Engineering Faculty of Engineering and Applied Science, at the University of Ontario Institute of Technology. He's an Editor-in-Chief of three academic journals and a board member for many more. He is the author and editor of numerous Springer titles. Aloui Fethi is a Professor at the University of Valenciennes with interests in fluid mechanics, energetics, inverse methods among others.
Part 1: Heat and mass transfer, and fluid mechanics.- Chapter1. Dynamic Study of a Metal Hydride Pump.- Chapter2. Unsteady Aerodynamic Analysis of Different Multi MW Horizontal Axis Wind Turbine Blade Profiles on SST-K-.- Chapter3. Productivity Analysis and Numerical Simulation for Fractured Wells in Unconventional Gas Reservoirs.- Chapter4. Study of Porous Flow Mechanism for Low Permeability Sandstone by Use of NMR.- Chapter5. Thermal and Dynamic characteristics of an Airflow in a Channel Provided with Circular and Triangular Cavities.- Chapter6. Turbulent Air Flow Investigation through the Vaned Diffuser Turbocharger using CFD.- Chapter7. Some Measurements in Multiple Jets.- Chapter8. Study of Growth Rate in Turbulent Mixing Layers.-Chapter9. Natural Convection Heat Transfer of Water-Based CuO and Water-Based Al2O3 Nanofluids Through A Horizontal Plate.- Chapter10. Analysis of Coriolis Effect in a Curved Pipe Conveying Hydrogen Using Timoshenko Beam Element.- Chapter11. Inverse Design Method of Wind Turbine in Solar Chimney Power Plants Coupled with Geothermal Energy.- Chapter12. The Techniques Used for Performance Prediction of Vertical Axis Wind Turbines.- Chapter13. Modeling and Numerical Investigation of Latent Heat Storage Unit Using Paraffin Wax.- Chapter14. Investigation of Effective Parameters on the Human Body Exergy and Energy Model.- Chapter15. Motion of a Solid Particle in a Water Flow Inside a Pipe.- Chapter16. Numerical Modeling and Performance Optimization Study of a Cavity Receiver in Solar Tower.- Chapter17. Parametric Study on Thermal Performance of PCM-Heat Sink Used for Electronic Cooling.- Chapter18. Aerodynamic and Energy Analysis of an Industrial Wind Turbine.-Chapter19. A CFD Analysis of the Air Flow through the Stirling Engines Singularities.- Chapter20. Modelling Energetic Efficiency of Coil Annealing Using Hydrogen Gas.- Chapter21. Modelling of Flat Plate and V-Corrugated Solar Air Heaters for Single and Counter Flow OperatingModes.- Chapter22. Parametric Numerical Study of Blood Flow Analysis in idealized Abdominal Aortic Aneurysms Geometries.- Chapter23. Experimental Investigation of Surface Flow Structure over Non-Slender Diamond Wing.- Chapter24. Experimental Investigations on Condensation of Steam in Microchannels.- Chapter25. Development of a CFD Model for Prediction of a Natural Gas Fuelled HCCI Engine Combustion and Performance Characteristics Employing a New Reduced Chemical Kinetic Mech.-Chapter26. Modeling of Wind Loads on Heliostats Installed in South Algeria for Various Pylon Height.- Chapter27. Experimental Investigations of the Effect of the Enrichment with Oxygen on the Stability of the Diffusion Flame from Burners with Separate Injections.- Chapter28. Prediction of Heat and Mass Transfer within a Metal-Hydrogen Reactor Using the Lattice Boltzmann Method.-Chapter29. Experimental and Theoretical Investigation of Flows inside a Gamma Stirling Engine Regenerator.-Chapter30. Secondary Migration of Fang Crude Petroleum Related to Volumetric Flow Rate.- Chapter31. Characteristic of Savonius vertical axis rotor in water channel.-Chapter32. Hydrodynamics Design of a Tunnel Submarine with Dimension Analysis.- Chapter33. Aerodynamic performances of Pitching wind air-foil using unsteady panel method.- Chapter34. Mathematical Modeling of heat and mass transfers in Humidifiers.- Chapter35. Heat and Mass Transfer during Hydriting.- Chapter36. Numerical and Dynamic Study of Flow Instabilities and Heat Transfer at a Backward Facing Step Using the Lattice Boltzmann Method.- Chapter37. Experimental investigations on oscillatory Couette-Taylor Flow wall shear stress behaviour using electrochemical technique: High modulation effect.- Chapter38. Boundary layer separation on an airfoil at a low Reynolds number.- Chapter39. Experimental Investigations of Taylor-Couette Flow Using PIV and Electrochemical Techniques.- Chapter40. Radial distribution of mass transfer and wall shear instantaneousr