Instabilities and turbulence in engineering flows
Author(s)
Bibliographic Information
Instabilities and turbulence in engineering flows
(Fluid mechanics and its applications, v. 16)
Kluwer Academic Publishers, c1993
Available at 24 libraries
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Note
Includes bibliographical references
Description and Table of Contents
Description
This book contains contributions by colleagues, former students and friends of Professor Eli Reshotko in celebration of his 60th birth day. Since Professor Reshotko's scientific and engineering contribu tions have been in the areas of hydrodynamic stability, transition to turbulence, and boundary layer flows, it is only appropriate that the articles in this volume be devoted to these and related topics. The first two sections focus on instabilities and transition in sub sonic and supersonic flows, respectively. The third section deals with developing turbulence, while the the final section treats related prob lems in engineering fluid mechanics. The diversity and scope of the articles contained herein exemplify the insight and expertise required in the study of transitional and turbulent flows today - traits which also exemplify Eli Reshotko's contributions to these fields. A few of the articles in this volume were presented at a sym posium in honor of Eli Reshotko's 60th birthday, held in Newport News, Virginia, on July 28, 1991. The symposium was sponsored by lCASE, and organized by M.Y. Hussaini (lCASE) and R. Hirsh (U.S. National Science Foundation). Of those who could not attend, many chose to honor Professor Reshotko by a contribution to the volume dedicated to him. We would like to use this opportunity to express our deep ap preciation to M.Y. Hussaini for initiating this very special tribute to Eli, and to Ms. Emily Todd for her efforts in the volume preparation and in the organization of the symposium.
Table of Contents
Preface. Part 1: Instability and Transition in Subsonic Flow. Part 2: Instability and Transition in High-Speed Flow. Part 3: Turbulence in Nonequilibrium Flows. Part 4: Related Problems in Engineering Flows.
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