Flow boiling and condensation in microscale channels / Fabio Toshio Kanizawa, Gherhardt Ribatski.
2021
QC320.2
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Title
Flow boiling and condensation in microscale channels / Fabio Toshio Kanizawa, Gherhardt Ribatski.
ISBN
9783030687045 (electronic bk.)
303068704X (electronic bk.)
3030687031
9783030687038
303068704X (electronic bk.)
3030687031
9783030687038
Published
Cham, Switzerland : Springer, [2021]
Language
English
Description
1 online resource (xvi, 277 pages) : illustrations (some color)
Item Number
10.1007/978-3-030-68704-5 doi
Call Number
QC320.2
Dewey Decimal Classification
621.402/1
Summary
This book covers aspects of multiphase flow and heat transfer during phase change processes, focusing on boiling and condensation in microscale channels. The authors present up-to-date predictive methods for flow pattern, void fraction, pressure drop, heat transfer coefficient and critical heat flux, pointing out the range of operational conditions that each method is valid. The first four chapters are dedicated on the motivation to study multiphase flow and heat transfer during phase change process, and the three last chapters are focused on the analysis of heat transfer process during boiling and condensation. During the description of the models and predictive methods, the trends are discussed and compared with experimental findings. Provides a comprehensive description of flow patterns during the phase change process for boiling and condensation in conventional and micro scale channels; Discusses changes of trends of experimental results based on the operational conditions; Compiles up-to-date predictive methods for void fraction, flow pattern, pressure drop, and heat transfer coefficient during convective flow boiling and condensation in micro scale channels; Serves as a roadmap for design of heat spreaders based on micro-scale channels.
Bibliography, etc. Note
Includes bibliographical references and index.
Access Note
Access limited to authorized users.
Source of Description
Online resource; title from PDF title page (SpringerLink, viewed May 7, 2021).
Added Author
Series
Mechanical engineering series (Berlin, Germany), 0941-5122
Available in Other Form
Print version: 9783030687038
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Table of Contents
Introduction
Fundamentals
Flow patterns
Pressure drop
Flow boiling heat transfer coefficient
Critical heat flux and dryout
Condensation.
Fundamentals
Flow patterns
Pressure drop
Flow boiling heat transfer coefficient
Critical heat flux and dryout
Condensation.