참고문헌
- Cheng, S., Irwin, P.A., Jakobsen, J.B., Lankin, J., Larose, G.L., Savage, M.G., Tanaka, H. and Zurell, C. (2003a), "Divergent motion of cables exposed to skewed wind", Proceedings of the Fifth Int. Symposium on Cable Dynamics, S. Margherita Ligure (Italy), September 2003, 271-278.
- Cheng, S., Larose, G.L., Savage, M.G. and Tanaka, H. (2003b), "Aerodynamic behaviour of an inclined circular cylinder", Wind and Struct., 6, 197-208. https://doi.org/10.1296/V6N3May002
- Di Paola, M., Falsone, G. and Pirrotta, A. (1992), "Stochastic response analysis of nonlinear systems under Gaussian inputs", Probabilistic Engineering Mechanics, 7, 15-21. https://doi.org/10.1016/0266-8920(92)90004-2
- Freda, A. (2005), Behaviour of Slender Structural Elements Having an Arbitrary Attitude in the Wind Field, Ph.D. thesis, University of Genova.
- Larose, G.L., Jakobsen, J.B. and Savage, M.G. (2003), "Wind-tunnel experiments on an inclined and yawed stay cable model in the critical Reynolds number range", Proceedings of the Fifth Int. Symposium on Cable Dynamics, S. Margherita Ligure (Italy), September 2003, 279-286.
- Luongo, A. and Piccardo, G. (2005), "Linear instability mechanisms for coupled translational galloping", J. Sound Vib., in press.
- Macdonald, J.H.G. and Larose, G.L. (2004), "Quasi-steady analysis of dry inclined cable galloping in the critical Reynolds number range", Proceedings of WES2004, UK Wind Engineering Society, Cranfield (UK), September 2004.
- Matsumoto, M., Shiraishi, N., Kitazawa, M., Knisely, C., Shirato, H., Kim, Y. and Tsujii, M. (1990), "Aerodynamic behavior of inclined circular cylinders - cable aerodynamics", J. Wind Eng. Ind. Aerodyn., 33, 63-72. https://doi.org/10.1016/0167-6105(90)90021-4
- Saito, T., Matsumoto, M. and Kitazawa, M. (1994), "Rain-wind excitation of cables on cable-stayed Higashi- Kobe Bridge and cable vibration control", Proceedings of the Int. Conf. Cable-Stayed and Suspension Bridges, Deauville, October 1994, 2, 507-514.
- Schewe, G. (1983), "On the force fluctuations acting on a circular cylinder in crossflow from subcritical up to transcritical Reynolds numbers", J. Fluid Mech., 133, 265-285. https://doi.org/10.1017/S0022112083001913
- Schewe, G. (2001), "Reynolds-number effects in flow around more-or-less bluff bodies", J. Wind Eng. Ind. Aerodyn., 89, 1267-1289. https://doi.org/10.1016/S0167-6105(01)00158-1
- Strømmen, E. and Hjorth-Hansen, E. (1995), "The buffeting wind loading of structural members at an arbitrary attitude in the flow", J. Wind Eng. Ind. Aerodyn., 56, 267-290. https://doi.org/10.1016/0167-6105(94)00092-R
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