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Información bibliografica (registro INGC-EBK-000513)
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T韙ulo:
Structural Motion Engineering by Jerome Connor, Simon Laflamme.
Autor:
Connor, Jerome.
Otros autores:
| Laflamme, Simon.  | 
Editado por:
Springer International Publishing :;Imprint: Springer,
Año de publicación:
2014.
Lugar de publicación:
Cham :
Descripción física:
xiii, 619 p. : il.
ISBN:
9783319062815
Materias:
| Structural Mechanics. | Solid Construction. | Control. | Building materials. | Building construction. | Architectural. | Construction. | Building. | Dynamics. | Dynamical systems. | Vibration. | Engineering. |
Notas:
Introduction -- Part 1. Passive Control -- Optimal Stiffness Distribution鈅"Static Loading -- Optimal Stiffness/Damping for Dynamic Loading -- Optimal Passive Damping Distribution -- Tuned Mass Damper Systems -- Base Isolation Systems -- Part 2. Active and Semi-Active Control -- Applications of Active Control -- Structural Control Dynamics -- Linear Control -- Advanced Control Theory.
Sumario:
This innovative volume provides a systematic treatment of the basic concepts and computational procedures for structural motion design and engineering for civil installations. The authors illustrate the application of motion control to a wide spectrum of buildings through many examples. Topics covered include optimal stiffness distributions for building-type structures, the role of damping in controlling motion, tuned mass dampers, base isolation systems, linear control, and nonlinear control. The book's primary objective is the satisfaction of motion-related design requirements, such as restrictions on displacement and acceleration. The book is ideal for practicing engineers and graduate students. This book also: 路聽聽聽聽聽聽聽聽 Broadens practitioners' understanding of structural motion control, the enabling technology for motion-based design 路聽聽聽聽聽聽聽聽 Provides readers the tools to satisfy requirements of modern, ultra-high strength materials that lack corresponding stiffness, where the motion requirements control the design 路聽聽聽聽聽聽聽聽 Equips engineers and designers to adapt to more-excitable, contemporary structures that experience more structural motion under service loading 路聽聽聽聽聽聽聽聽 Explains the severe design constraints attending structures such as micro-device and semiconductor manufacturing centers in which the environment must be virtually motion free 路聽聽聽聽聽聽聽聽 Illustrates motion-based energy absorption mechanisms as a cost-effective alternative over inelastic deformation to dissipate energy and control structural response 路聽聽聽聽聽聽聽聽 Features nearly 400 figures.
URL:
http://dx.doi.org/10.1007/978-3-319-06281-5
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