
Structural Motion Engineering
Springer (Publisher)
Published on 18. July 2014
Book
Hardback
XIII, 619 pages
978-3-319-06280-8 (ISBN)
Description
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 the satisfaction of motion-related design requirements such as restrictions on displacement and acceleration and seeks the optimal deployment of material stiffness and motion control devices to achieve these design targets as well as satisfy constraints on strength. The book is ideal for practicing engineers and graduate students.
More details
Edition
2014 ed.
Language
English
Place of publication
Cham
Switzerland
Publishing group
Springer International Publishing
Target group
Professional and scholarly
Professional/practitioner
Illustrations
313 s/w Abbildungen, 84 farbige Abbildungen
XIII, 619 p. 397 illus., 84 illus. in color.
Dimensions
Height: 241 mm
Width: 160 mm
Thickness: 40 mm
Weight
1109 gr
ISBN-13
978-3-319-06280-8 (9783319062808)
DOI
10.1007/978-3-319-06281-5
Schweitzer Classification
Other editions
Additional editions

Jerome Connor | Simon LaFlamme
Structural Motion Engineering
Book
10/2016
Springer
€139.09
Shipment within 10-15 days

Jerome Connor | Simon LaFlamme
Structural Motion Engineering
E-Book
06/2014
Springer
€128.39
Available for download
Persons
Dr. Jerome Connor is Professor of Civil Engineering at the Massachusetts Institute of Technology. Dr. Simon Laflamme is Assistant Professor of Civil, Construction, and Environmental Engineering at Iowa State University.
Content
Introduction.- Part 1. Passive Control.- Optimal Stiffness Distribution-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.