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Dynamic Stability of Columns under Nonconservative Forces - Theory and Experiment (Hardcover, 1st ed. 2019): Yoshihiko... Dynamic Stability of Columns under Nonconservative Forces - Theory and Experiment (Hardcover, 1st ed. 2019)
Yoshihiko Sugiyama, Mikael A. Langthjem, Kazuo Katayama
R4,149 R3,714 Discovery Miles 37 140 Save R435 (10%) Ships in 12 - 17 working days

This book treats dynamic stability of structures under nonconservative forces. it is not a mathematics-based, but rather a dynamics-phenomena-oriented monograph, written with a full experimental background. Starting with fundamentals on stability of columns under nonconservative forces, it then deals with the divergence of Euler's column under a dead (conservative) loading from a view point of dynamic stability. Three experiments with cantilevered columns under a rocket-based follower force are described to present the verifiability of nonconservative problems of structural stability. Dynamic stability of columns under pulsating forces is discussed through analog experiments, and by analytical and experimental procedures together with related theories. Throughout the volume the authors retain a good balance between theory and experiments on dynamic stability of columns under nonconservative loading, offering a new window to dynamic stability of structures, promoting student- and scientist-friendly experiments.

Flow-Induced Vibrations - Classifications and Lessons from Practical Experiences (Paperback, 2nd edition): Tomomichi Nakamura,... Flow-Induced Vibrations - Classifications and Lessons from Practical Experiences (Paperback, 2nd edition)
Tomomichi Nakamura, Shigehiko Kaneko, Fumio Inada, Minoru Kato, Kunihiko Ishihara, …
R2,247 R2,063 Discovery Miles 20 630 Save R184 (8%) Ships in 12 - 17 working days

In many plants, vibration and noise problems occur due to fluid flow, which can greatly disrupt smooth plant operations. These flow-related phenomena are called flow-induced vibration. This book explains how and why such vibrations happen and provides hints and tips on how to avoid them in future plant design. The world-leading author team doesn't assume prior knowledge of mathematical methods and provides the reader with information on the basics of modeling. The book includes several practical examples and thorough explanations of the structure, the evaluation method and the mechanisms to aid understanding of flow-induced vibrations.

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