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Positioning  2011 

Positioning in Dynamic Testing of Slender Bridges

DOI: 10.4236/pos.2011.23011, PP. 103-111

Keywords: Bridges, Deformation Positioning, Dynamic Testing, Interactive Mechanics, Fourier Transformation, Mul-ti-functioning, Optimization, Virtual Monitoring, Wave Propagation

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Abstract:

The positioning combined with multi-functioning and interactive mechanics in dynamic testing of slender bridges are treated in present paper. The approach takes into account multiple functions in dynamic testing of slender bridges constructed of thin-walled structural members with their hierarchical configuration. Theoretical, numerical and experimental in situ assessments of the problem are presented. Some results of the application in situ are submitted.

References

[1]  L. Da Vinci, “Manuscript RL 19115v; K/P 114r,” Royal Library, Windsor Castle, Windsor, ca. 1500.
[2]  P. Paultre, O. Challal and J. Proux, “Bridge Dynamics and Dynamic Amplification Factors – A Review of Analytical and Experimental Findings,” Canadian Journal of Civil Engineering, Vol. 19, No. 2, 1992, pp. 260-278. doi:10.1139/l92-032
[3]  J. Proulx, D. Hébert and P. Poultre, “Dynamic bridge testing in Quebec,” Proceedings of International Conference Structural Dynamics—EURODYN’93, Trondheim, Vol. 2, 1993, pp. 943-950.
[4]  J. Bencat, “Dynamic Testing of the Old Bridge Crossing Danube in Bratislava,” Technical Report Nr. 6-3-21/SvF/06, TU Zilina, 2008.
[5]  A. Tesar, “Testing of the Old Bridge Crossing Danube in Bratislava,” Technical Report, 2001.
[6]  A. Tesar, “Transfer Matrix Method,” Kluwer Academic Publishers, Dordrecht/Boston/London, 1988.
[7]  R. Razani, “Behaviour of Fully Stressed Design of Structures and Its Relationship to Minimum-Weight Design,” Journal Amer. Inst. Aeron. Astron., Vol. 3, 1965, pp. 2262-2268.
[8]  R. L. Fox, “Optimization Methods for Engineering Design,” Addison-Wesley Publishing Group, Reading, 1971
[9]  U. Kirsch, “Synthesis of Structural Geometry Using Approximate Concepts,” Composite Structures, Vol. 15, 1982, pp. 103-111.
[10]  L. A. Schmit and H. Miura, “A New Structural Analysis/Synthesis Capability—Access,” American Institute of Aeronautics and Astronautics Journal, Vol. 14, No. 5, 1975, pp. 661-671.
[11]  A. Tesar, “Synthesis in Optimisation of Shell Bridge Structures,” Building Research Journal, Vol. 35, 1985, pp. 812-824.
[12]  J. Rechenberg, “Evolutionsstrategie,” Reihe Problemata 15, F. Frommann Verlag, Stuttgart, 1977.
[13]  A. Tesar, “Load-Bearing Control of Slender Bridges,” International Journal for Numerical Methods in Engineering, Vol. 62, No. 7, 2005, pp. 924-936. doi:10.1002/nme.1213
[14]  A. Tesar, et al., “Ultimate Response of Bionics Shells,” Structural Engineering and Mechanics, Vol. 14, No. 2, 2002, pp. 135-150.
[15]  A. Tesar, “Bionics and Fractal Configurations in Structural Engineering,” International Journal for Numerical Methods in Engineering, Vol. 68, No. 7, 2006, pp. 790- 807. doi:10.1002/nme.1734
[16]  S. C. Burgess, “Multi-Functioning and Multi-Optimization in Feathers,” International Journal of Design & Nature, Vol. 1, No. 1, 2007, pp. 1-10.
[17]  J. Bencat, “Dynamic Testing of the Old Bridge Crossing Danube in Bratislava,” Technical Report Nr. 6-3/SvF/06, TU Zilina, 2006.
[18]  J. Bendat and A. Piersol, “Engineering Applications of Correlation and Spectral Analysis,” John Wiley and Sons, Inc., New York, 1980.
[19]  J. Melcer, “Dynamic Testing of the Old Bridge Crossing Danube in Bratislava,” Report Nr.6/34/SvF/05, TU Zilina, 2005.

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