Two-phase gas-liquid flow in pipes with different orientations /

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Bibliographic Details
Author / Creator:Ghajar, Afshin J. (Afshin Jahanshahi), 1951-
Imprint:Cham : Springer, 2020.
Description:1 online resource (136 pages)
Language:English
Series:SpringerBriefs in Applied Sciences and Technology
SpringerBriefs in applied sciences and technology.
Subject:
Format: E-Resource Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/12604408
Hidden Bibliographic Details
ISBN:9783030416263
3030416267
9783030416256
3030416259
9783030416256
9783030416270
3030416275
Digital file characteristics:text file PDF
Notes:Includes bibliographical references and index.
Print version record.
Summary:This book provides design engineers using gas-liquid two-phase flow in different industrial applications the necessary fundamental understanding of the two-phase flow variables. Two-phase flow literature reports a plethora of correlations for determination of flow patterns, void fraction, two- phase pressure drop and non-boiling heat transfer correlations. However, the validity of a majority of these correlations is restricted over a narrow range of two -phase flow conditions. Consequently, it is quite a challenging task for the end user to select an appropriate correlation/model for the type of two-phase flow under consideration. Selection of a correct correlation also requires some fundamental understanding of the two-phase flow physics and the underlying principles/assumptions/limitations associated with these correlations. Thus, it is of significant interest for a design engineer to have knowledge of the flow patterns and their transitions and their influence on two-phase flow variables. To address some of these issues and facilitate selection of appropriate two-phase flow models, this volume presents a succinct review of the flow patterns, void fraction, pressure drop and non-boiling heat transfer phenomenon and recommend some of the well scrutinized modeling techniques.
Other form:Print version: Ghajar, Afshin J. Two-Phase Gas-Liquid Flow in Pipes with Different Orientations. Cham : Springer International Publishing AG, ©2020 9783030416256
Standard no.:10.1007/978-3-030-41626-3