Öchsner / Murch / Shokuhfar | New Perspectives on Mass and Thermal Transport in Engineering Materials | Buch | 978-3-0357-1562-0 | sack.de

Buch, Englisch, 264 Seiten, Format (B × H): 170 mm x 240 mm, Gewicht: 590 g

Öchsner / Murch / Shokuhfar

New Perspectives on Mass and Thermal Transport in Engineering Materials

Buch, Englisch, 264 Seiten, Format (B × H): 170 mm x 240 mm, Gewicht: 590 g

ISBN: 978-3-0357-1562-0
Verlag: Trans Tech Publications


The present volume attempts to capture some of this excitement by providing a cross-section of contemporary research in mass transfer and thermal processes in the modern engineering materials and technologies. The volume spans both experiment and modelling and covers both basic research and applied research. Topics covered are broad, covering heat exchange in porous media to the drying of sisal fibre, from the role of nanoparticles for enhanced oil recovery to the atomistic of grain boundary diffusion and segregation.
Öchsner / Murch / Shokuhfar New Perspectives on Mass and Thermal Transport in Engineering Materials jetzt bestellen!

Weitere Infos & Material


Preface
Heat Exchange in Unsaturated Porous Media with Heat Dependent Water Flow
The Speedup of the Calculation of Heat Transfer Parameters in Thermal Insulation Coating Experiments
Permeation Data Analysis Considering a Nonzero Hydrogen Concentration on the Low Pressure Detector Side for a Purged Permeation Experiment
CaCO3 Particle-Filled Polymer Composite Manufacturing via RTM Process: An Experimental Investigation
Drying of Sisal Fiber: A Theoretical and Experimental Investigation
Drying of Banana Slices: Lumped Model Application and Experiments
Drying of Industrial Hollow Ceramic Brick: A Numerical Analysis Using CFD
Heat Transfer in Packed Bed Elliptic-Cylindrical Reactor: The Geometry Effect
Synthesis and Characterization of Double-Promoted Copper-Based Catalysts for CO2 Hydrogenation into Fuels
Effect of Vanadium Addition on the Surface Roughness and Fatigue Crack Propagation in a Railroad Wheel Using Twin Disc Wear Test
Synthesis and Characterization of Titanium Dioxide Nanoparticles for Application in Enhanced Oil Recovery
Dissolution of Al 6%wt c Mixture Using Mechanical Alloying
Lithium Diffusion in Amorphous LixSi (x = 0.4) Materials
Relaxation Effects in Nonstoichiometric NBT-Based Ceramics
Application of Reverse Logistics for the Recycling of Polypropylene Waste and Oyster Shell
Measurements of Surface Tension for Mineral and Crude Oil Systems
Fabrication and Characterization of Cu Doped CeO2 by Hydrothermal Process for Antimicrobial Activity
Tnr Dependent Hot Rolling Microstructure and Texture Development in C-Mn Dual Phase and HSLA Steels
Evolution of Microstructural and Mechanical Properties of Fiber Laser Welded Dual Phase Steels
Solidification of Ni-Ti Shape Memory Alloy: Modeling and Simulation
Study on Flame Propagation Characteristics According to New Ignition- Source in a Constant Volume Combustion Chamber
Fluid Structure Interaction Analysis of Liquid Tanks by the Coupled SPH - FEM Method with Experimental Verification
Large versus Small Grain Sizes on Fatigue Life of Aluminum Aircraft Wheels
Graphene Utilization for Water Desalination Process
Application of Nuclear Gamma-Resonance Spectroscopy for Determination of Grain-Boundary Diffusion Characteristics and the State of Grain Boundaries
Reduction Roasting of Titaniferous Ores
Research of Titaniferous Ores Melting and Properties of Cast Iron and Slag
The Quantum Effect on Mass Transfer in the Surface Layer in Stressed Solids
Convective and Microwave Drying of Prolate Spheroidal Solids: Modeling and Simulation
Effect of Intermediate Heat Treatment on the Formation and Structure of Superconducting Layers in Multifilamentary Nb3Sn- Based Wires
On the Physics of Anomalies of Boron Nanosegregation at Dislocations in FeAl


Eds. Prof. Andreas Öchsner, Prof. Graeme E. Murch, Ali Shokuhfar and João Delgado


Ihre Fragen, Wünsche oder Anmerkungen
Vorname*
Nachname*
Ihre E-Mail-Adresse*
Kundennr.
Ihre Nachricht*
Lediglich mit * gekennzeichnete Felder sind Pflichtfelder.
Wenn Sie die im Kontaktformular eingegebenen Daten durch Klick auf den nachfolgenden Button übersenden, erklären Sie sich damit einverstanden, dass wir Ihr Angaben für die Beantwortung Ihrer Anfrage verwenden. Selbstverständlich werden Ihre Daten vertraulich behandelt und nicht an Dritte weitergegeben. Sie können der Verwendung Ihrer Daten jederzeit widersprechen. Das Datenhandling bei Sack Fachmedien erklären wir Ihnen in unserer Datenschutzerklärung.