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Heat transfer processes in engineering materials : special topic volume with invited peer reviewed papers only /

Heat transfer plays major role in many technical devises or in the formation of new materials. Heat transfer is based in three phenomena, namely conduction, convection and radiation. Understanding heat transfer at many levels, from atomic to macro, and its interaction with other physical phenomena h...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Otros Autores: Öchsner, Andreas, Belova, Irina, Murch, Graeme
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Durnten-Zurich : Trans Tech Publications Ltd., [2013]
Colección:Diffusion and defect data. Defect and diffusion forum ; v. 336.
Temas:
Acceso en línea:Texto completo

MARC

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245 0 0 |a Heat transfer processes in engineering materials :  |b special topic volume with invited peer reviewed papers only /  |c edited by Andreas Ochsner, Irina Belova and Graeme Murch. 
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490 1 |a Diffusion and defect data. Part A, Defect and diffusion forum ;  |v volume 336 
504 |a Includes bibliographical references and index. 
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520 |a Heat transfer plays major role in many technical devises or in the formation of new materials. Heat transfer is based in three phenomena, namely conduction, convection and radiation. Understanding heat transfer at many levels, from atomic to macro, and its interaction with other physical phenomena has therefore long attracted the attention of many researchers in engineering and materials science and related disciplines. The present topical volume on "Heat Transfer Processes in Engineering Materials" captures a representative cross-section of some of the recent advances in the area of heat transfer. Reflecting the enormous breadth of the area, the range of topics covered is accordingly very large. Topics include the development and modification of the microstructure of materials. Technical applications such as casting problems, coal drying, air cooling systems and pyrolytic boilers. The prediction methods range from analytical to numerical methods such as the finite element method, the finite difference method and molecular dynamics simulation. The special-topic volume of invited, peer-reviewed papers presents a broad review of recent developments and current understandings in how heat moves through artificial materials, devices, and systems. The topics include cross-injection film cooling on a curved surface with or without a vortical flow in the mainstream, the mixed convection boundary layer flow of viscoelastic fluids past a sphere, optimizing a thermoelectric air conditioning system, the alternating current magnetic heating of superparamagnetic iron and cobalt nanoparticles, and the numerical simulation and experimental validation of heat conductivity in metallic hollow sphere structures 
505 0 |a Heat Transfer Processes in Engineering Materials; Preface; Table of Contents; Thermo-Mechanical Analysis of Rubber Compounds Filled by Carbon Nanotubes; Modeling of Titanium Oxide Layer Growth Produced by Fiber Laser Beam; Experimental Study of Temperature Effect on Oil Relative Permeability in Porous Media; Modifications of Pyrolysis Boilers to Reduce Harmful Flue Gas Emissions; Cross-Injection Film Cooling on a Curved Surface with or without a Vortical Flow in the Mainstream; Molecular Dynamics Simulation of Thermal Conductivity of Aluminum 
505 8 |a Optimization of a Thermoelectric Air Conditioning SystemsModeling of Coal Drying before Pyrolysis; Determination of Thermal Diffusivity and Influence of Defect Structure in Alloys Based on the Fe-Al System; Sensitivity of Models Applied in Selected Simulation Systems with Respect to Database Quality for Resolving of Casting Problems; Ranque-Hilsch Vortex Tube Potential for Water Desalination; AC Magnetic Heating of Superparamagnetic Fe and Co Nanoparticles; Phonon Thermal Conductivity of F.C.C. Cu by Molecular Dynamics Simulation 
505 8 |a Bounding of Effective Thermal Conductivity of Two-Phase MaterialsError Estimates for the Finite Difference Solution of the Heat Conduction Equation: Consideration of Boundary Conditions and Heat Sources; Heat Conductivity of Metallic Hollow Sphere Structures: Numerical Simulation and Experimental Validation; Keywords Index; Authors Index 
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700 1 |a Öchsner, Andreas. 
700 1 |a Belova, Irina. 
700 1 |a Murch, Graeme. 
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