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Mathematical Models for Suspension Bridges - Filippo Gazzola

Mathematical Models for Suspension Bridges

Nonlinear Structural Instability

(Autor)

Buch | Softcover
XXI, 259 Seiten
2016 | Softcover reprint of the original 1st ed. 2015
Springer International Publishing (Verlag)
978-3-319-36857-3 (ISBN)
CHF 74,85 inkl. MwSt
This work provides a detailed and up-to-the-minute survey of the various stability problems that can affect suspension bridges. In order to deduce some experimental data and rules on the behavior of suspension bridges, a number of historical events are first described, in the course of which several questions concerning their stability naturally arise. The book then surveys conventional mathematical models for suspension bridges and suggests new nonlinear alternatives, which can potentially supply answers to some stability questions. New explanations are also provided, based on the nonlinear structural behavior of bridges. All the models and responses presented in the book employ the theory of differential equations and dynamical systems in the broader sense, demonstrating that methods from nonlinear analysis can allow us to determine the thresholds of instability.

Prof. Filippo Gazzola, Department of Mathematics, Politecnico di Milano, Italy.

1 Book overview.- 2 Brief history of suspension bridges.- 3 One dimensional models.- 4 A fish-bone beam model.- 5 Models with interacting oscillators.- 6 Plate models.- 7 Conclusions.

Erscheinungsdatum
Reihe/Serie MS&A
Zusatzinfo XXI, 259 p. 81 illus., 48 illus. in color.
Verlagsort Cham
Sprache englisch
Maße 155 x 235 mm
Themenwelt Mathematik / Informatik Mathematik Analysis
Schlagworte Appl.Mathematics/Computational Methods of Engineer • Differential calculus and equations • Dynamical Systems • Instability and chaos • Mathematical Modeling and Industrial Mathematics • Mathematical Modelling • Mathematics • mathematics and statistics • Maths for engineers • mechanical engineering • nonlinear elasticity • Ordinary Differenatial Equations • Ordinary differential equations • Partial differential equations • Poincaré maps and Hill equation • Structural Mechanics
ISBN-10 3-319-36857-5 / 3319368575
ISBN-13 978-3-319-36857-3 / 9783319368573
Zustand Neuware
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