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Advances in heat transfer. Volume 34 /

Advances in Heat Transfer is designed to fill the information gap between regularly scheduled journals and university level textbooks by providing in-depth review articles over a broader scope than is allowable in either journals or texts.

Detalles Bibliográficos
Clasificación:Libro Electrónico
Otros Autores: Hartnett, J. P. (James P.), Irvine, Thomas F. (Thomas Francis), Cho, Young I., Greene, G. Alanson
Formato: Electrónico eBook
Idioma:Inglés
Publicado: San Diego : Academic Press, �2001.
Colección:Advances in heat transfer ; v. 34
Temas:
Acceso en línea:Texto completo
Texto completo
Texto completo

MARC

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245 0 0 |a Advances in heat transfer.  |n Volume 34 /  |c serial editors, James P. Hartnett, Thomas F. Irvine Jr. ; serial associate editors, Young I. Cho, George A. Greene. 
260 |a San Diego :  |b Academic Press,  |c �2001. 
300 |a 1 online resource (xi, 475 pages) :  |b illustrations 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b c  |2 rdamedia 
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490 0 |a Advances in heat transfer ;  |v v. 34 
504 |a Includes bibliographical references and Index. 
520 |a Advances in Heat Transfer is designed to fill the information gap between regularly scheduled journals and university level textbooks by providing in-depth review articles over a broader scope than is allowable in either journals or texts. 
588 0 |a Print version record. 
505 0 |a Front Cover; Advances in Heat Transfer; Copyright Page; Contents; Contributors; Preface; Chapter 1. Transport Phenomena in Heterogeneous Media Based on Volume Averaging Theory; I. Introduction; II. Fundamentals of Hierarchical Volume Averaging Techniques; III. Nonlinear and Turbulent Transport in Porous Media; IV. Microscale Heat Transport Description Problems and VAT Approach; V. Radiative Heat Transport in Porous and Heterogeneous Media; VI. Flow Resistance Experiments and VAT-Based Data Reduction in Porous Media 
505 8 |a VII. Experimental Measurements and Analysis of Internal Heat Transfer Coefficients in Porous MediaVIII. Thermal Conductivity Measurement in a Two-Phase Medium; IX. VAT-Based Compact Heat Exchanger Design and Optimization; X. New Optimization Technique for Material Design Based on VAT; XI. Concluding Remarks; Nomenclature; References; Chapter 2. Two-Phase Flow in Microchannels; I. Introduction; II. Characteristics of Microchannel Flow; III. Two-Phase Flow Regimes and Void Fraction in Microchannels; IV. Pressure Drop; V. Forced Flow Subcooled Boiling; VI. Critical Heat Flux in Microchannels 
505 8 |a VII. Critical Flow in Cracks and SlitsVIII. Concluding Remarks; Nomenclature; References; Chapter 3. Turbulent Flow and Convection: The Prediction of Turbulent Flow and Convection in a Round Tube; I. Introduction; II. The Quantitative Representation of Turbulent Flow; III. The Quantitative Representation of Fully Developed Turbulent Convection; IV. Summary and Conclusions; References; Chapter 4. Progress in the Numerical Analysis of Compact Heat Exchanger Surfaces; I. Introduction; II. Physics of Flow and Heat Transfer of CHE Surfaces; III. Numerical Analysis; IV. Turbulence Models 
505 8 |a v. Numerical Results of the CHE SurfacesVI. Conclusions; Nomenclature; References; Author Index; Subject Index 
546 |a English. 
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700 1 |a Hartnett, J. P.  |q (James P.) 
700 1 |a Irvine, Thomas F.  |q (Thomas Francis) 
700 1 |a Cho, Young I. 
700 1 |a Greene, G. Alanson. 
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