References
- Det Norske Veritas (DNV), 2006. Recommended Practice DNVRP- F105, Free Spanning Pipelines, Det Norske Veritas.
- Gao, Y., Zong, Z., Sun, L., 2011. Numerical Prediction of Fatigue Damage in Steel Catenary Riser due to Vortex-Induced Vibration. Journal of Hydrodynamics, 23(2), 154-163. https://doi.org/10.1016/S1001-6058(10)60099-6
- Gopalkrishnan, R., 1993. Vortex-Induced Forces on Oscillating Bluff Cylinders, Sc. D. Thesis. Massachusetts Institute of Technology and Woods Hole Oceabigraphic Institute.
- Kim, K.H., 2013. Dynamic Response Analysis of Top-Tensioned Riser under Sheared Cureent Load. Journal of Ocean Engineering and Technology, 27(4), 83-89. https://doi.org/10.5574/KSOE.2013.27.4.083
- Park, S.J., Kwon, H.J., Lee, I., Han, J.H., 2004. Flow-Induced Vibration Analysis of Bridge Girder Section. Journal of Korean Society for Noise and Vibration Engineering, 14(5), 402-409. https://doi.org/10.5050/KSNVN.2004.14.5.402
- Vandiver, J.K., Li, L., 2005. SHEAR7 V4.4 Program Theoretical Manual. Massachusetts Institute of Technology.
- Vandiver, J.K., Li, L., 2015. User Guide for SHEAR7 Version 4.9a. Massachusetts Institute of Technology.
- Venugopal, M., 1996. Damping and Response Prediction of a Flexible Cylinder in a Current, Ph.D. Thesis. Massachusetts Institute of Technology.
- Vikestad, K., 1998. Multi-Frequency Response of a Cylinder Subjected to Vortex Shedding and Support Motions, Ph.D. Thesis, Norwegian University of Science and Technology.
- Vikestad, K., Larsen, C.M., Vandiver, J.K., 2000. Damping of Vortex-Induced Vibrations. Offshore Technology Conference, Paper No. OTC 11998, Houston, Texas.
- Youn, J.Y., 2016. Dynamic Response and Fatigue Life Estimation of Top-Tensioned Marine Riser according to the Methods to Determine Power-in Region and Distribution, Master Thesis. Pusan National University.