An edition of Cryogenic two-phase flow (1996)

Cryogenic two-phase flow

applications to large-scale systems

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Last edited by MARC Bot
August 3, 2024 | History
An edition of Cryogenic two-phase flow (1996)

Cryogenic two-phase flow

applications to large-scale systems

Cryogenic systems that involve two-phase (vapor-liquid) flows are widely used in industries such as aerospace, metallurgy, power engineering, and food production, as well as in high energy physics research.

The purpose of this book is to describe characteristic features of cryogenic systems involving two-phase flow, create mathematical models of these systems, and then show how the models may be used to develop optimal designs for practical cryogenic systems. The models are examined using analytical and numerical techniques, and then the predictions are compared to experimental measurements.

Since transient phenomena can produce severe and unexpected effects in cryogenic systems, the authors pay particular attention to this important topic. Examples in the book are drawn from cryogenic fluid transport, gasification, and the stabilization of superconducting magnets. Much of this work is related to the development of large Russian systems in the areas of space technology, energy research, and particle physics.

This book, the first devoted solely to cryogenic two-phase flow, will be a valuable reference for cryogenic engineers and scientists.

Publish Date
Language
English
Pages
136

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Previews available in: English

Edition Availability
Cover of: Cryogenic Two-Phase Flow
Cryogenic Two-Phase Flow: Applications to Large Scale Systems
2011, Cambridge University Press
in English
Cover of: Cryogenic two-phase flow
Cryogenic two-phase flow: applications to large-scale systems
1996, Cambridge University Press
in English

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Book Details


Edition Notes

Includes bibliographical references (p. 130-133) and index.

Published in
Cambridge, New York

Classifications

Dewey Decimal Class
621.5/9
Library of Congress
TA357.5.M84 F55 1996

The Physical Object

Pagination
x, 136 p. :
Number of pages
136

Edition Identifiers

Open Library
OL995153M
ISBN 10
0521481929
LCCN
96033751
OCLC/WorldCat
34115538
LibraryThing
3637859
Goodreads
2296071

Work Identifiers

Work ID
OL3293787W

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