9781420089233-1420089234-Wavelet-Based Vibration Control of Smart Buildings and Bridges

Wavelet-Based Vibration Control of Smart Buildings and Bridges

ISBN-13: 9781420089233
ISBN-10: 1420089234
Edition: 1
Author: Hojjat Adeli, Hongjin Kim
Publication date: 2009
Publisher: CRC Press
Format: Hardcover 238 pages
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Book details

ISBN-13: 9781420089233
ISBN-10: 1420089234
Edition: 1
Author: Hojjat Adeli, Hongjin Kim
Publication date: 2009
Publisher: CRC Press
Format: Hardcover 238 pages

Summary

Wavelet-Based Vibration Control of Smart Buildings and Bridges (ISBN-13: 9781420089233 and ISBN-10: 1420089234), written by authors Hojjat Adeli, Hongjin Kim, was published by CRC Press in 2009. With an overall rating of 4.3 stars, it's a notable title among other books. You can easily purchase or rent Wavelet-Based Vibration Control of Smart Buildings and Bridges (Hardcover) from BooksRun, along with many other new and used books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.3.

Description

Earthquakes, bridge collapses, and other natural disasters have dominated news coverage in the last few years. Aging infrastructure needs to be rehabilitated and new infrastructure needs to be designed differently. Presenting a highly innovative, modern approach verging on the futuristic, Wavelet-Based Vibration Control of Smart Buildings and Bridges discusses a new generation of building and bridge structures that not only withstands [generation is singular] the destructive effects of nature but is also impact and explosion resistant.

Based on the groundbreaking work of Hojit Adeli, the book introduces the new mathematical concept of wavelets into the field of structural vibration control. It presents a new control algorithm for robust control of smart civil structures subjected to destructive environmental forces, such as earthquakes and wind. It then discusses a new hybrid control system, the hybrid tuned liquid column damper (TLCD) system. The new hybrid control system, which combines passive and semi-active control systems, is intended to achieve increased reliability and maximum operability of the control system during power failure and to eliminate the need for a larger power requirement.

The great majority of papers published in this area of active structural vibration control deal with small or academic problems. The models in this book have been tested and their effectiveness evaluated extensively on small problems for the sake of comparison with other methods and results reported in the literature. The authors go one step further and apply them to realistic and large building and bridge structures to demonstrate the applicability of the new smart technology to large real-world civil structures. Balancing coverage between theory and application, the book demonstrates the benefits of the new smart technology in the design of structures that are safer and more sustainable.

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