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Advances in microscale and nanoscale thermal and fluid sciences /

Applications of microscale and nanoscale thermal and fluid transport phenomena involved in traditional industries and highly specialized fields such as bioengineering, micro-fabricated fluidic systems, microelectronics, aerospace technology, micro heat pipes, and chips cooling etc., have become espe...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Otros Autores: Cheng, Lixin (Editor )
Formato: Electrónico eBook
Idioma:Inglés
Publicado: New York : Nova Publishers, [2013]
Colección:Engineering tools, techniques and tables.
Temas:
Acceso en línea:Texto completo
Tabla de Contenidos:
  • ""ADVANCES IN MICROSCALE AND NANOSCALE THERMAL AND FLUID SCIENCES""; ""ADVANCES IN MICROSCALE AND NANOSCALE THERMAL AND FLUID SCIENCES""; ""Library of Congress Cataloging-in-Publication Data""; ""Contents""; ""Preface""; ""Chapter 1: Flow Diagnostics in Microfluidics with Advanced Laser Doppler Techniques""; ""Abstract""; ""1. Introduction""; ""2. The Laser Doppler Velocity Profile Sensor""; ""3. Selected Application
  • Electrochemistry""; ""4. Conclusion and Outlook""; ""Acknowledgments""; ""References""; ""Chapter 2: Topological Transition in a Stack of Water Droplets""; ""Abstract""
  • ""Nomenclature""""1. Introduction""; ""2. Methods and Materials""; ""2.1. Device Fabrication""; ""2.2. Material""; ""2.3. Method: Droplet production, Trap Description, Compression and Theory""; ""3. Results and Discussion""; ""3.1. Transition at Large Confinement (A/W2 0.49)""; ""3.2. Transition at Small Confinement (A/W ² < 0.49)""; ""Conclusion""; ""Acknowledgment""; ""References""; ""Chapter 3: Three Dimensional Effects in Compressible, Rarefied Gas Flow in Bent Microchannels""; ""Abstract""; ""Nomenclature""; ""Introduction""; ""Statement of the Problem and Numerical Method""
  • ""Results and Discussion""""Geometry Effect""; ""Effect of Radius of Curvature""; ""Variation with Aspect Ratio""; ""Influence of Knudsen Number""; ""Conclusion""; ""Acknowledgments""; ""References""; ""Chapter 4: The Structure of Supersonic Two-Dimensional and Axisymmetric Microjets""; ""Abstract""; ""Nomenclature""; ""1. Introduction""; ""2. Experimental Equipment and Methods of Diagnostics""; ""3. Measurement Results""; ""Conclusion""; ""Acknowledgments""; ""References""; ""Chapter 5: Estimation of Flow Characteristics in Micro-geometries""; ""Abstract""; ""Nomenclature""
  • ""1. Introduction""""2. An(Æ? Re Correlation""; ""3. Flow Model in a Micro-geometry""; ""4. Differential Equations for Pressure Distributions""; ""5. Calculation Methodology""; ""6. Estimation of an Æ? Re Correlation (Comparison with Experimental and Numerical Results)""; ""6.1. Mass Flow Rate""; ""6.2. Pressure Distribution and Mach Number""; ""6.3. f Re Value""; ""Conclusion""; ""References""; ""Chapter 6: Generation and Manipulation of Micro Droplets""; ""Abstract""; ""Nomenclature""; ""Greek Symbols""; ""1. Introduction""
  • ""2. Droplets Generation by Direct Ejection in Atmosphere/Vacuum""""2.1. The Classification of Inkjet""; ""2.1.1. Thermal Inkjet Printhead""; ""2.1.2. Piezoelectric Inkjet Printhead""; ""2.1.3. Electrostatic and Acoustic Inkjet Printhead""; ""2.2. Inkjet Designs for Performance Enhancement""; ""2.3. The Applications of Micro Droplet Generators""; ""3. Droplets Formation and Manipulation in Microfluidic Channels""; ""3.1. Droplet Formation or Emulsification""; ""3.2. Double Emulsification""; ""3.3. Active Emulsification Schemes""; ""3.4. Droplet Fusion""