Moving Loads - Dynamic Analysis and Identification Techniques: Structures and Infrastructures Book Series, Vol. 8: Structures and Infrastructures
Autor Siu-Seong Law, Xin-Qun Zhuen Limba Engleză Hardback – 18 feb 2011
This volume provides a comprehensive treatment on this topic with the vehicle-bridge system for an illustration of the moving load problem. It covers a whole range of topics, including mathematical concepts of the moving load problems with continuous beams and plates, vehicle-bridge interaction dynamics, weigh-in-motion techniques, moving load identification algorithms in the frequency-time domain, in the time domain and in the state space domain, techniques based on the generalized orthogonal function expansion and on the finite element formulation. The methods and algorithms can be implemented for on-line identification of the interaction forces.
This book is intended for structural engineers and advanced students who wish to explore the benefit of interaction phenomenon and techniques for identification of such interaction forces. It is also recommended for researchers and decision makers working on the operation and maintenance of major infrastructures and engineering facilities.
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Specificații
ISBN-13: 9780415878777
ISBN-10: 0415878772
Pagini: 332
Ilustrații: 18 tables, 5 halftones and 70 line drawings
Dimensiuni: 174 x 246 x 15 mm
Greutate: 0.77 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Seria Structures and Infrastructures
ISBN-10: 0415878772
Pagini: 332
Ilustrații: 18 tables, 5 halftones and 70 line drawings
Dimensiuni: 174 x 246 x 15 mm
Greutate: 0.77 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Seria Structures and Infrastructures
Public țintă
Professional and Professional Practice & DevelopmentCuprins
1. Introduction; Part I – Moving Load Problems 2. Dynamic Response of Multi-span Continuous Beams under Moving Loads 3. Dynamic Response of Orthotropic Plates under Moving Loads 4. Application of Vehicle–Bridge Interaction Dynamics
Part II – Moving Load Identification Problems 5. Moving Force Identification in Frequency–Time Domain 6. Moving Force Identification in Time Domain 7. Moving Force Identification in State Space 8. Moving Force Identification with Generalized Orthogonal Function Expansion 9. Moving Force Identification based on Finite Element Formulation 10. Application of Vehicle–Bridge Interaction Force Identification 11. Concluding Remarks and Future Directions
Part II – Moving Load Identification Problems 5. Moving Force Identification in Frequency–Time Domain 6. Moving Force Identification in Time Domain 7. Moving Force Identification in State Space 8. Moving Force Identification with Generalized Orthogonal Function Expansion 9. Moving Force Identification based on Finite Element Formulation 10. Application of Vehicle–Bridge Interaction Force Identification 11. Concluding Remarks and Future Directions
Notă biografică
Siu-Seong Law is is an Associate Professor with the Civil and Structural Engineering Department of the Hong Kong Polytechnic University, prior to which he spent several years in the civil engineering industry with especial experience with long-span bridges.
Descriere
Moving load problems occur in a wide variety of applications and as lightweight and high-strength materials continue to be popular, it is expected that vibration and instability problems caused by this structural loading will remain significant.
This volume begins with detailed descriptions of the dynamic behavior of continuous beam, beam-slab type bridge decks, and multi-box spline bridge decks, under the passage of moving loads. It then addresses moving load identification problems with simple methods for universal application and with specialized techniques. A final chapter treats practical problems associated with moving load identification techniques.
This volume begins with detailed descriptions of the dynamic behavior of continuous beam, beam-slab type bridge decks, and multi-box spline bridge decks, under the passage of moving loads. It then addresses moving load identification problems with simple methods for universal application and with specialized techniques. A final chapter treats practical problems associated with moving load identification techniques.