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Aerodynamics of Large Bridges

Aerodynamics of Large Bridges
Author: Allan Larsen
Publisher: Routledge
Total Pages: 348
Release: 2017-10-19
Genre: Technology & Engineering
ISBN: 1351468049

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As bridges spans get longer, lighter and more slender, aerodynamic loads become a matter of serious study. This volume of proceedings reflect the co-operation between civil and mechanical engineering and meteorology in this field.


Theory of Bridge Aerodynamics

Theory of Bridge Aerodynamics
Author: Einar Strmmen
Publisher: Springer Verlag
Total Pages: 239
Release: 2010-08-05
Genre: Technology & Engineering
ISBN: 9783642067846

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This text book is intended for studies in structural dynamics or wind engineering, with special focus on the stochastic theory of wind induced dynamic response calculations for slender bridges or other line- like civil engineering type of structures. It contains the background assumptions and hypothesis as well as the development of the computational theory that is necessary for the prediction of wind induced fluctuating displacements and cross sectional forces. The book contains detailed and complete examples of relevant cases that are useful for the understanding and the practical application of the theory. The text is at an advanced level in the sense that it requires some knowledge of basic structural dynamics, particularly of solution procedures in a modal format.


Aerodynamics of Large Bridges

Aerodynamics of Large Bridges
Author: Allan Larsen
Publisher: Routledge
Total Pages: 320
Release: 2017-10-19
Genre: Technology & Engineering
ISBN: 1351468057

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As bridges spans get longer, lighter and more slender, aerodynamic loads become a matter of serious study. This volume of proceedings reflect the co-operation between civil and mechanical engineering and meteorology in this field.


Aerodynamics of Large Bridges

Aerodynamics of Large Bridges
Author: Allan Larsen
Publisher:
Total Pages: 305
Release: 1992
Genre: Bridges
ISBN:

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Theory of Bridge Aerodynamics

Theory of Bridge Aerodynamics
Author: Einar Strømmen
Publisher: Springer
Total Pages: 302
Release: 2010-07-01
Genre: Science
ISBN: 9783642136597

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In this second edition a new chapter has been added covering the buffeting theory in a finite element format. The motivation for this has been that a finite element format is becoming more and more dominant in all areas of structural mechanics. It is streamlined for computer programming, and it facilitates the use of general purpose routines that are applicable in several types of structural engineering problems. In this book the finite element formulation of the problem of dynamic response calculations follows the general principle of virtual work, a general principle which may be found in many other text books. While the buffeting wind load itself has with no trouble been included in a finite element format, the main challenge has been to obtain a consistent formulation that includes all the relevant motion induced forces. This has been important, because, while many structures (e.g. long-span suspension bridges) may suffer greatly and become unstable at high wind velocities, the same structures may also benefit from these effects at the design wind velocity. It is well known that motion induced forces will change the stiffness and damping properties of the combined structure and flow system. If calculations are performed for a suitably close set of increasing mean wind velocities and the changing mechanical properties (stiffness and damping) are updated from one velocity to the next, then the response of the system may be followed up to wind velocities close to the stability limit, i.e. up to response values that are perceived as unduly large. Finite element calculations may be performed in time domain, in frequency domain or converted into a modal format. All these options have been included. Pursuing a time domain solution strategy requires the use of the so-called indicial functions. The theory behind such a formulation is also covered, and the determination of these functions from aerodynamic derivatives has been included in a separate appendix.


Aerodynamic Stability of Suspension Bridges with Special Reference to the Tacoma Narrows Bridge: Model investigations which influenced the design of the New Tacoma Narrows bridge

Aerodynamic Stability of Suspension Bridges with Special Reference to the Tacoma Narrows Bridge: Model investigations which influenced the design of the New Tacoma Narrows bridge
Author: University of Washington Structural Research Laboratory
Publisher:
Total Pages: 110
Release: 1954
Genre: Bridge failures
ISBN:

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Aerodynamic Stability of Suspension Bridges with Special Reference to the Tacoma Narrows Bridge: Extended studies : logarithmic decrement, field damping, prototype predictions, four other bridges

Aerodynamic Stability of Suspension Bridges with Special Reference to the Tacoma Narrows Bridge: Extended studies : logarithmic decrement, field damping, prototype predictions, four other bridges
Author: University of Washington Structural Research Laboratory
Publisher:
Total Pages: 108
Release: 1954
Genre: Bridge failures
ISBN:

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Long-Span Bridges and Aerodynamics

Long-Span Bridges and Aerodynamics
Author: Toshio Miyata
Publisher: Springer
Total Pages: 376
Release: 1999-07
Genre: Science
ISBN:

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The completion of the Akashi Kaikyo Bridge connecting the Japanese islands of Honshu and Shikoku is a milestone in the history of bridge engineering and wind-resistant design. With a main span of 1900 meters, it is the longest suspension bridge in the world. As the April 1998 inauguration of the Akashi Kaikyo Bridge approached, the International Seminar on Long-Span Bridge Aerodynamics Perspective 8 was held in Kobe, Japan, where engineers and researchers from Japan and Europe met to discuss the next generation of long-span bridges and their aerodynamics. In the seminar's papers compiled in this volume, a major topic is long-span bridge projects, including perspectives from Europe and the East Asia, a discussion of high-strength, high-performance steels, and a look at the challenges of the future. A second major topic is structural and aerodynamic design, including technical details of the wind-resistant design of the Akashi Kaikyo Bridge and other long-span bridges in the world.