fluid structure interactions
Review (vol1):
This book constitutes the first six chapters of what, with Volume II, is to be a text with a total of 13 chapters. The 6 chapters at hand comprise a careful and focused review of the central concern of the author's research for more than 3 decades: the problems of oscillation and general structural instability induced by the axial flow in and around pipes, the representative paradigmatic example being the "fire hose" or jet-follower instability problem.
While avoiding a claim of exhaustive treatment, the text does in fact offer a very detailed, thorough and exacting analytic and bibliographical coverage of many aspects of axial-flow pipe problems, certainly more than any other text. ... The work is clearly a labor of sustained dedication and care. The author has enlivened it in places with brief anecdotal material from practical situations. As he hints, he does not wish to risk boring the reader. He aims the text at engineers and applied mathematicians, especially researchers and practicing professionals. All of these should welcome it as an unusual, responsible, and highly valuable reference."
-Robert H. Scanlan, Journal of Fluids and Structures
"This book is the first of two volumes that focus on the fundamentals of flow-induced vibrations. Both the causes of vibrations and the symptoms are discussed, along with some long-term preventive measures. The author stresses the benefits of discovering the source of the vibration and solving the vibration problems rather than adding a buffer to reduce vibratory effects. The text begins with a general overview of the topic and a classification of flow-induced vibrations. A brief description of the contents of volume 2 is also given
Review(vol2):
"With the second volume of Fluid-Structure Interaction, Michael Paidoussis has completed a comprehensive and unique two-volume book on fluid-structure interaction in axial flows. Throughout the book the author provides detailed, well-illustrated applications of the subjects treated, some of which are in traditional areas of engineering and some in the rapidly developing new field of bioengineering.
The emphasis is on physical understanding of the problems, and as a result the treatment is biased towards analytical and semi-analytical methods, but comparison with experiments is extensive and systematically provided, using well-thought-out figures, graphs and photographs. Great care is taken to explain several fine points and resolve apparent paradoxes that have been at the centre of controversy over the years.
Theoretical results are always presented side-by-side with detailed and careful comparisons with experiments; this gives great strength to the arguments and derivations. The author possesses an unmatched expertise in the area, and his knowledge of the literature, which spans several decades, and mastery of all developments is impressive. The exposition is very detailed, but at the same time clear, starting from basics and proceeding to the most complex phenomena; the various chapters are self-contained. This book will be a very valuable source for graduate courses on hydroelasticity, where by necessity only subsets of the book can be covered, while it will be an essential reference for workers in the field. The author states that the book has been written for engineers and applied mathematicians; its uniform and systematic treatment of a vast field does indeed provide invaluable service both to engineers and theoreticians.
In conclusion this is the definitive book on hydroelasticity in axial flow, an essential source for the researcher, but also a valuable textbook for the graduate student a very unusual and valuable book indeed. One must marvel at the amount of work and care that must have been devoted to writing such a book - it is a pleasure to read and a rich source of information. It is highly recommended to libraries and as course material."
vol1(24.5mb)
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