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Friday, July 17, 2020 | History

3 edition of Fluid flow, heat transfer and boiling in micro-channels found in the catalog.

Fluid flow, heat transfer and boiling in micro-channels

L. P. Yarin

Fluid flow, heat transfer and boiling in micro-channels

by L. P. Yarin

  • 144 Want to read
  • 12 Currently reading

Published by Springer in Berlin .
Written in English

    Subjects:
  • Microfluidics,
  • Heat -- Transmission,
  • Ebullition

  • Edition Notes

    Includes bibliographical references and indexes.

    StatementL.P. Yarin, A. Mosyak, G. Hetsroni.
    SeriesHeat and mass transfer
    ContributionsMosyak, A., Hetsroni, Gad.
    Classifications
    LC ClassificationsTJ853 .Y37 2009
    The Physical Object
    Paginationxiv, 481 p. :
    Number of Pages481
    ID Numbers
    Open LibraryOL23860858M
    ISBN 109783540787549, 9783540787556
    LC Control Number2008936040

    Engineering Data Book III Two-Phase Flow and Flow Boiling in Microchannels unexplored, one can expect that a further nanoscale two-phase flow and heat transfer domain may emerge as well for even smaller sizes of channels where yet other two-phase mechanisms control the Size: 1MB. The International Journal of Heat and Fluid Flow publishes high impact research that primarily expands upon the interplay between fluid dynamic processes and convective heat transfer through the use of experiments and/or computer simulations, with an emphasis on the physics associated with the problem considered. Papers are welcomed that report the uses of these disciplines to engineering.

    Boiling heat transfer Boiling is the transition from liquid to vapor via formation (or nucleation) of bubbles. It typically requires heat addition. When the boiling process occurs at constant pressure (e.g. in the BWR fuel assemblies, PWR steam generators, and practically all other heat exchangers in . THERMODYNAMICS, HEAT TRANSFER, AND FLUID FLOW Rev. 0 HT. The information contained in this handbook is by no means all encompassing. An attempt to present the entire subject of thermodynamics, heat transfer, and fluid flow would be impractical. However, the Thermodynamics, Heat Transfer, and Fluid Flow handbook doesFile Size: KB.

      Heat Transfer and Fluid Flow in Minichannels and Microchannels: Edition 2 - Ebook written by Satish Kandlikar, Srinivas Garimella, Dongqing Li, Stephane Colin, Michael R. King. Read this book using Google Play Books app on your PC, android, iOS devices. Download for offline reading, highlight, bookmark or take notes while you read Heat Transfer and Fluid Flow in Minichannels and .   Heat Transfer and Fluid in Flow Nuclear Systems discusses topics that bridge the gap between the fundamental principles and the designed practices. The book is comprised of six chapters that cover analysis of the predicting thermal-hydraulics performance of large nuclear reactors and associated heat-exchangers or steam generators of various Book Edition: 1.


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Fluid flow, heat transfer and boiling in micro-channels by L. P. Yarin Download PDF EPUB FB2

The book treats the problem of single- and two-phase heat transfer in micro-channels. We consider the effect of wall roughness on energy dissipation, axial heat conduction, operating parameters corresponding to stable and unstable flow and steady and unsteady flow with distinct by: The book treats the problem of single- and two-phase heat transfer in micro-channels.

We consider the effect of wall roughness on energy dissipation, axial heat conduction, operating parameters corresponding to stable and unstable flow and steady and unsteady flow with distinct interface.

The Hardcover of the Fluid Flow, Heat Transfer and Boiling in Micro-Channels by L. Fluid flow, A. Mosyak, G. Hetsroni | at Barnes & Noble. FREE Due to COVID, orders may be : Heat Transfer and Fluid Flow in Minichannels and Microchannels methodically covers gas, liquid, and electrokinetic flows, as well as flow boiling and condensation, in minichannel and microchannel applications.

Examining biomedical applications as well, the book is an ideal reference for anyone involved in the design processes of microchannel flow passages in a heat : Paperback. The subject of the book is uid dynamics and heat transfer in micro-channels.

This problem is important for understanding the complex phenomena associated with single- and two-phase ows in heated micro-channels. The challenge posed by high heat uxes in electronic chips makes thermal management a key factor in the development of these systems. Cooling of mic- electronic components by new cooling.

Heat Transfer and Fluid Flow in Minichannels and Microchannels methodically covers gas, liquid, and electrokinetic flows, as well as flow boiling and heat transfer and boiling in micro-channels book, in minichannel and microchannel applications.

Examining biomedical applications as well, the book is an ideal reference for anyone involved in the design processes of microchannel flow passages in a heat exchanger. System that Contains a Number of Parallel Micro-Channels Average Heat Transfer Coefficient Summary References Nomenclature 7 Design Considerations Single-Phase Flow Gas-Liquid Flow Boiling in Micro-Channels Boiling Incipience Flow Boiling: Pressure Drop Characteristics Effect of dissolved gases on boiling in water and surfactant solution was revealed.

Attention was paid on pressure drop and heat transfer, critical heat flux and instabilities during flow boiling in microchannels. Fluid Flow, Heat Transfer and Boiling in Micro-Channels Heat and Mass Transfer: : L.

Yarin, A. Mosyak, G. Hetsroni: Libros en idiomas extranjerosAuthor: L. Yarin. Channel Flow Boiling Correlation Flow boiling heat transfer correlations, such as those of Kandlikar (, b), utilize the single-phase, all-liquid heat transfer coefficient in predicting the nucleate boiling and convective boiling components as given by the following equations.

(5a) (5b) (5c) The single-phase, all-liquid-flow heat. The heat transfer coefficients are quite high in a single phase flow with small diameter channels, and the flow boiling yields much higher values.

The major advantage of flow boiling systems is the ability of the fluid to carry larger amounts of thermal energy by latent heat of vaporization. Flow and Heat Transfer --Cooling Systems of Electronic Devices --Velocity Field and Pressure Drop in Single-Phase Flows --Heat Transfer in Single-Phase Flows --Gas-Liquid Flow --Boiling in Micro-Channels --Design Considerations --Special Topics --Capillary Flow with a Distinct Interface --Steady and Unsteady Flow in a Heated Capillary --Laminar Flow in a Heated Capillary with a Distinct.

Heat Transfer and Fluid Flow in Minichannels and Microchannels serves as a sourcebook for those individuals involved in the design processes of microchannel flow passages in a heat exchanger. Flow Boiling Heat Transfer in Microchannels Flow boiling heat transfer to water in microchannels is experimentally investigated.

The dimensions of the microchannels considered are and m2. The experiments are conducted at inlet water temperatures in the range of 67–95°C and mass fluxes of – kg/m2 s.

The maximum heat. BibTeX @MISC{Yarin_fluidflow, author = {L. Yarin and A. Mosyak and G. Hetsroni and Q Springer}, title = {Fluid Flow, Heat Transfer and Boiling in Micro-Channels}, year = {}}.

A new type of diabatic flow pattern map for boiling heat transfer in microchannels. R Revellin and J R Thome.

Published 9 March • IOP Publishing Ltd Journal of Micromechanics and Microengineering, Vol Number 4. Heat Transfer and Fluid Flow in Minichannels and Microchannels methodically covers gas, liquid, and electrokinetic flows, as well as flow boiling and condensation, in minichannel and microchannel applications.

Examining biomedical applications as well, the book is an ideal reference for anyone involved in the design processes of microchannel. Flow boiling heat transfer to water in microchannels is experimentally investigated.

The dimensions of the microchannels considered are × and × μ m 2 ⁠. The experiments are conducted at inlet water temperatures in the range of 67 – 95 ° C and mass fluxes of – kg ∕ Cited by: Micro-channels are the future for cooling all types of circuits.

This book presents the first systematic exposition of the problem related to microfluid flow developing under conditions of intensive heat. Two-phase cooling technique including flow boiling heat transfer in microchannel is being widely applied in the mechanical and electronic devices, whereas most of the existing related studies still experiment with common coolants with low boiling points that are not suitable for extreme high-temperature heat : Zongwei Zhang, Wendi Xu, Huiling Cao, Cong Liu, Zhao Wang.

Overall Heat Transfer Coefficient Convection Heat Transfer Summary RADIANT HEAT TRANSFER Thermal Radiation Black Body Radiation Emissivity Radiation Configuration Factor Summary HEAT EXCHANGERS Heat Exchangers Parallel and Counter-Flow Designs Non-Regenerative Heat Exchanger Regenerative Heat Exchanger Cooling Towers Log Mean.Fluid flow and heat transfer process at the microscale bring into play many aspects that are not significant at the macro scale.

The book fills a void in the existing literature and covers a large body of new knowledge in the thermal-fluid dynamics theory and applications in micro-geometries.The computational fluid dynamics (CFD) modeling of boiling phenomena has remained a challenge due to numerical limitations for accurately simulating the two-phase flow and phase-change processes.

In the present investigation, a CFD approach for such analysis is described using a three-dimensional (3D) volume of fluid (VOF) model coupled with a Cited by: 8.