Dynamic Response of Structures to Wind and Earthquake Loading

Dynamic Response of Structures to Wind and Earthquake Loading
Author: Phillip L. Gould,Salman H. Abu-Sitta
Publsiher: Unknown
Total Pages: 175
Release: 1980-01-01
Genre: Buildings
ISBN: 0727304038

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Vibration of Buildings to Wind and Earthquake Loads

Vibration of Buildings to Wind and Earthquake Loads
Author: T. Balendra
Publsiher: Springer Science & Business Media
Total Pages: 156
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 9781447120551

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Recent advances in the development of high strength materials, coupled with more advanced computational methods and design procedures, have led to a new generation of tall and slender buildings. These structures are very sensitive to the most common dynamic loads; wind and earthquakes. The primary requirement for a successful design is to provide safety while taking into account serviceability requirements. This book provides a well-balanced and broad coverage of the information needed for the design of structural systems for wind- and earthquake-resistant buildings. It covers topics such as the basic concepts in structural dynamics and structural systems, the assessment of wind and earthquake loads acting on the system, the evaluation of the system response to such dynamic loads and the design for extreme loading. The text is generously illustrated and supported by numerical examples and will be of great interest to practising engineers and researchers in structural, civil and design engineering and also to architects. The author has drawn on his experience as a teacher, researcher and consultant.

Basic Structural Dynamics

Basic Structural Dynamics
Author: James C. Anderson,Farzad Naeim
Publsiher: John Wiley & Sons
Total Pages: 253
Release: 2012-07-16
Genre: Technology & Engineering
ISBN: 9781118279090

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A concise introduction to structural dynamics and earthquake engineering Basic Structural Dynamics serves as a fundamental introduction to the topic of structural dynamics. Covering single and multiple-degree-of-freedom systems while providing an introduction to earthquake engineering, the book keeps the coverage succinct and on topic at a level that is appropriate for undergraduate and graduate students. Through dozens of worked examples based on actual structures, it also introduces readers to MATLAB, a powerful software for solving both simple and complex structural dynamics problems. Conceptually composed of three parts, the book begins with the basic concepts and dynamic response of single-degree-of-freedom systems to various excitations. Next, it covers the linear and nonlinear response of multiple-degree-of-freedom systems to various excitations. Finally, it deals with linear and nonlinear response of structures subjected to earthquake ground motions and structural dynamics-related code provisions for assessing seismic response of structures. Chapter coverage includes: Single-degree-of-freedom systems Free vibration response of SDOF systems Response to harmonic loading Response to impulse loads Response to arbitrary dynamic loading Multiple-degree-of-freedom systems Introduction to nonlinear response of structures Seismic response of structures If you're an undergraduate or graduate student or a practicing structural or mechanical engineer who requires some background on structural dynamics and the effects of earthquakes on structures, Basic Structural Dynamics will quickly get you up to speed on the subject without sacrificing important information.

Dynamic Loading and Design of Structures

Dynamic Loading and Design of Structures
Author: Andreas Kappos
Publsiher: CRC Press
Total Pages: 394
Release: 2001-10-11
Genre: Technology & Engineering
ISBN: 0419229302

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Until now, information on the dynamic loading of structures has been widely scattered. No other book has examined the different types of loading in a comprehensive and systematic manner, and looked at their signficance in the design process. The book begins with a survey of the probabilistic background to all forms of loads, which is particularly important to dynamic loads, and then looks at the main types in turn: wind, earthquake, wave, blast and impact loading. The relevant code provisions (Eurocode and UBC American) are detailed and a number of examples are used to illustrate the principles. A final section covers the analysis for dynamic loading, drawing out the concepts underlying the treatment of all dynamic loads, and the corresponding modelling techniques. Throughout there is a focus on the modelling of structures, rather than on classical structural dynamics.

Designer s Guide to the Dynamic Response of Structures

Designer s Guide to the Dynamic Response of Structures
Author: A.P. Jeary
Publsiher: CRC Press
Total Pages: 245
Release: 1998-01-01
Genre: Architecture
ISBN: 9781482271317

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This book addresses the dynamic behaviour of a variety of structures under loading actions, such as wind storms and earthquakes. The book can be used to help with the prediction of the dynamic response of structures indicated by a unified systems approach, and compares this method with the results of full-scale studies of the in-service performance

Structural Dynamics with Applications in Earthquake and Wind Engineering

Structural Dynamics with Applications in Earthquake and Wind Engineering
Author: Konstantin Meskouris,Christoph Butenweg,Klaus-G. Hinzen,Rüdiger Höffer
Publsiher: Springer
Total Pages: 552
Release: 2019-04-27
Genre: Technology & Engineering
ISBN: 9783662575505

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This book offers a comprehensive introduction to the theory of structural dynamics, highlighting practical issues and illustrating applications with a large number of worked out examples. In the spirit of “learning by doing” it encourages readers to apply immediately these methods by means of the software provided, allowing them to become familiar with the broad field of structural dynamics in the process. The book is primarily focused on practical applications. Earthquake resistant design is presented in a holistic manner, discussing both the underlying geophysical concepts and the latest engineering design methods and illustrated by fully worked out examples based on the newest structural codes. The spectral characteristics of turbulent wind processes and the main analysis methods in the field of structural oscillations due to wind gusts and vortex shedding are also discussed and applications illustrated by realistic examples of slender chimney structures. The user‐friendly software employed is downloadable and can be readily used by readers to tackle their own problems.

Dynamic Response of Lattice Towers and Guyed Masts

Dynamic Response of Lattice Towers and Guyed Masts
Author: Murty K.S. Madugula
Publsiher: ASCE Publications
Total Pages: 284
Release: 2001-01-01
Genre: Technology & Engineering
ISBN: 0784475113

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Prepared by the Task Committee on the Dynamic Response of Lattice Towers of the Technical Committee on Special Structures and the Technical Administrative Committee on Metals of the Structural Engineering Institute of ASCE. This report is a compilation and clarification of current methodologies for the dynamic response of communication towers in a single source. The information regarding the dynamic response of lattice towers is currently scattered throughout the literature, making it difficult for the practicing engineer to obtain the information necessary for design purposes. Both self-supporting lattice towers and guyed lattice masts (guyed lattice towers) are included. Topics include: Ødynamics of cables and towers, Ødynamic analysis, Øwind loads and response, Øseismic input and response, and Øvibration control.

Dynamic Response of Infrastructure to Environmentally Induced Loads

Dynamic Response of Infrastructure to Environmentally Induced Loads
Author: Anastasios G. Sextos,George D. Manolis
Publsiher: Springer
Total Pages: 286
Release: 2017-05-29
Genre: Science
ISBN: 9783319561363

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This book provides state of the art coverage of important current issues in the analysis, measurement, and monitoring of the dynamic response of infrastructure to environmental loads, including those induced by earthquake motion and differential soil settlement. The coverage is in five parts that address numerical methods in structural dynamics, soil–structure interaction analysis, instrumentation and structural health monitoring, hybrid experimental mechanics, and structural health monitoring for bridges. Examples that give an impression of the scope of the topics discussed include the seismic analysis of bridges, soft computing in earthquake engineering, use of hybrid methods for soil–structure interaction analysis, effects of local site conditions on the inelastic dynamic analysis of bridges, embedded models in wireless sensor networks for structural health monitoring, recent developments in seismic simulation methods, and seismic performance assessment and retrofit of structures. Throughout, the emphasis is on the most significant recent advances and new material. The book comprises extended versions of contributions delivered at the DE-GRIE Lab Workshop 2014, held in Thessaloniki, Greece, in November 2014.