Excerpt from Stability of Two-Phase Annular Flow in a Vertical Pipe
Because of its importance in many engineering applications fluid transport, heat exchangers), two-phase flow in tubes and orifices has received a great deal of attention in the last decade. But because the flow is very complex, even in straight vertical pipes, most of the effort has been devoted to accumulating a large quantity of experimental information, and to attempting to correlate data in particular cases with theories based on empirical relations. Furthermore, most of the work deals with the apparently simple (though important) case of annular flow without heat transfer or phase exchange; yet the results to date for this case are theoretically unsatisfactory and of modest practical utility. It is not the aim of this paper to correct this situation, but merely to apply the theory of hydrodynamic stability to this simple case in a more general way than has been used heretofore in this area. The stability theory has a record of significant (though not uniform) success.
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Excerpt from Stability of Two-Phase Annular Flow in a Vertical Pipe
Because of its importance in many engineering applications fluid transport, heat exchangers), two-phase flow in tubes and orifices has received a great deal of attention in the last decade. But because the flow is very complex, even in straight vertical pipes, most of the effort has been devoted to accumulating a large quantity of experimental information, and to attempting to correlate data in particular cases with theories based on empirical relations. Furthermore, most of the work deals with the apparently simple (though important) case of annular flow without heat transfer or phase exchange; yet the results to date for this case are theoretically unsatisfactory and of modest practical utility. It is not the aim of this paper to correct this situation, but merely to apply the theory of hydrodynamic stability to this simple case in a more general way than has been used heretofore in this area. The stability theory has a record of significant (though not uniform) success.
About the Publisher
Forgotten Books publishes hundreds of thousands of rare and classic books. Find more at www.forgottenbooks.com
This book is a reproduction of an important historical work. Forgotten Books uses state-of-the-art technology to digitally reconstruct the work, preserving the original format whilst repairing imperfections present in the aged copy. In rare cases, an imperfection in the original, such as a blemish or missing page, may be replicated in our edition. We do, however, repair the vast majority of imperfections successfully; any imperfections that remain are intentionally left to preserve the state of such historical works.
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PAP. Zustand: New. New Book. Shipped from UK. Established seller since 2000. Bestandsnummer des Verkäufers LX-9781527837423
Anzahl: 15 verfügbar
Anbieter: Forgotten Books, London, Vereinigtes Königreich
Paperback. Zustand: New. Print on Demand. Delve into the fascinating world of hydrodynamic stability, as this book explores the intricate relationship between fluids and their stability. Through the lens of infinitesimal disturbances, the author meticulously examines the behavior of two-phase annular flows in vertical pipes. This analysis provides valuable insights into predicting the onset of flow instabilities, crucial for optimizing fluid transport systems and heat exchangers. The book not only presents a rigorous theoretical foundation but also offers numerical methods to determine stability curves and critical parameters. By understanding the interplay between fluid properties, flow rates, and system geometry, it empowers engineers and scientists to design and operate fluid systems with enhanced stability and efficiency. This book is a reproduction of an important historical work, digitally reconstructed using state-of-the-art technology to preserve the original format. In rare cases, an imperfection in the original, such as a blemish or missing page, may be replicated in the book. print-on-demand item. Bestandsnummer des Verkäufers 9781527837423_0
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