Lorenzini | Engineering Thermodynamics, Heat Transfer and Fluid Flow in Natural and Industrial Processes | Buch | 978-3-0357-1329-9 | sack.de

Buch, Englisch, 446 Seiten, Format (B × H): 170 mm x 240 mm, Gewicht: 890 g

Lorenzini

Engineering Thermodynamics, Heat Transfer and Fluid Flow in Natural and Industrial Processes

Buch, Englisch, 446 Seiten, Format (B × H): 170 mm x 240 mm, Gewicht: 890 g

ISBN: 978-3-0357-1329-9
Verlag: Trans Tech Publications


Modern Engineering and Physics very often deal with the need for the design of natural or induced phenomena and processes and this is especially true in the problems involving heat transfer or fluid flows, often on the basis of a Thermodynamic viewpoint or of the Constructal Law. These broad areas of research are presented in this special issue of the journal "Defect and Diffusion Forum".
Lorenzini Engineering Thermodynamics, Heat Transfer and Fluid Flow in Natural and Industrial Processes jetzt bestellen!

Autoren/Hrsg.


Weitere Infos & Material


Preface
Flow Analysis of Multiple Injectors in High-Power-Density HSDI CR Diesel Engines
Impact of Soret and Dufour Numbers on MHD Casson Fluid Flow Past an Exponentially Stretching Sheet with Non-Uniform Heat Source/Sink
Thermal Radiation and Heat Source Effects on MHD Non-Newtonian Fluid Flow over a Slandering Stretching Sheet with Cross-Diffusion
Modeling Thermal Conductivity Ratio of CuO/Ethylene Glycol Nanofluid by Using Artificial Neural Network
Energetic Study of Gasification System for Bio-Waste as Renewable Energy Resource: Case Study
Unsteady Hydromagnetic Boundary Layer Flow of a Nanofluid over a Stretching Sheet: Using Cattaneo-Christov Heat Flux Model
MHD Three Dimensional Flow of Casson Fluid over an Unsteady Exponentially Stretching Sheet with Slip Conditions
Cross-Diffusion Effects on MHD Cattaneo-Christov Flow of Casson Fluid Past a Convective Linear/Non-Linear Stretching Sheet
Effect of Viscous Dissipation on Three Dimensional Flow of a Nanofluid by Considering a Gyrotactic Microorganism in the Presence of Convective Condition
Dual Solutions for Unsteady Stagnation-Point Flow of Prandtl Nanofluid Past a Stretching/shrinking Plate
MHD Natural Convection Slip Flow through Vertical Porous Plates with Time-Periodic Boundary Conditions
Effect of Viscous Dissipation on Upper - Convected Maxwell Fluid with Cattaneo-Christov Heat Flux Model Using Spectral Relaxation Method
Mixed Convection 3D Radiating Flow and Mass Transfer of Eyring-Powell Nanofluid with Convective Boundary Condition
Numerical Investigation of Chemical Reaction and Heat Source on Radiating MHD Stagnation Point Flow of Carreau Nanofluid with Suction/Injection
Effects of Variable Fluid Properties on MHD Non-Darcy Convective Flow from Vertical Plate with Heat Generation and Chemical Reaction
Numerical Investigation of Two-Phase Mixed Convection Flow of Particulate Oldroyd-B Fluid with Non-Linear Thermal Radiation and Convective Boundary Condition
Soret and Dufour Effects on Viscoelastic Radiative and Heat Absorbing Nanofluid Driven by a Stretched Sheet with Inclined Magnetic Field
Melting Heat Transfer in Magnetohydrodynamic Carreau Fluid over a Thermally Stratified Parabolic Surface
Cross Diffusion Effects on Heat and Mass Transfer Micropolar Fluid Flow Past a Stretching Surface
Non-Uniform Heat Source/Sink and Joule Heating Effects on Chemically Radiative MHD Mixed Convective Flow of Micropolar Fluid over a Stretching Sheet in Porous Medium
Slip Effects on MHD Convective Two-Phaseparticulate Suspension Flow in a Divergent Channel
Homotopy Analysis Method for Radiation and Hydrodynamic-Thermal Slips Effects on MHD Flow and Heat Transfer Impinging on Stretching Sheet
Effects of Mixed Convection on the Oscillatory Flow of a Couple Stress Fluid through a Vertical Plate with Variable Fluid Properties
Numerical Study of Micropolar Fluid Flow Past an Impervious Sphere
Thermodynamic Analysis of the Performance of an Irreversible PEMFC
Combined Effects of Electric Field and Magnetic Field on Electro Hydrodynamic Dispersion of Macromolecular Components in Biological Bearing
Turbulent Heat Transfer and Fluid Flow over Complex Geometry Fins
Finite-Element Analysis of Fully Developed Mixed Convection through a Vertical Channel in the Presence of Heat Generation/Absorption with a First-Order Chemical Reaction
Ferrofluid Convection in a Lid-Driven Cavity
Casson Liquid Flow due to Porous Stretching Sheet with Suction/Injection


Ed. Prof. Giulio LORENZINI


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