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http://dx.doi.org/10.3744/SNAK.2015.52.1.25

Natural Frequency of 2-Dimensional Cylinders in Heaving; Frequency-Domain Analysis  

Song, Je-Ha (Basic R&D Team, HHIC-TMS)
Lee, Seung-Joon (Dept. Naval Architecture and Ocean Engineering, Chungnam National University)
Publication Information
Journal of the Society of Naval Architects of Korea / v.52, no.1, 2015 , pp. 25-33 More about this Journal
Abstract
Following the previous works on the natural frequency of heaving circular cylinder, i.e. Lee and Lee (2013) and Kim and Lee (2013), an investigation of the same spirit on the 2-dimensional cylinder of Lewis form has been conducted. As before, the natural frequency is defined as that corresponding to the local maximum of the MCFR (Modulus of Complex Frequency Response), which is given by the equation of motion in the frequency domain analysis. Hydrodynamic coefficients were found by using the Ursell-Tasai method, and numerical results for them were obtained up to much higher frequencies than before, for which the method was known as numerically unstable in the past. For a wide range of H, the beam-draft ratio, and ${\sigma}$, the sectional area coefficient, including their practical ranges for a ship, results for the natural frequency were computed and presented in this work. Two approximate values for the natural frequency, one proposed by Lee (2008) and another one by the damped harmonic oscillator, were also compared with the current results, and for most cases it was observed that the current result is between the two values. Our numerical results showed that the values of the local maximum of MCFR as well as the natural frequencye increase as ${\sigma}$ increases while H decreases. At present, extension of the present finding to the 3-dimensional ship via the approximate theory like the strip method looks promising.
Keywords
Natural frequency; Frequency domain analysis; Heaving cylinder; Added mass; Wave damping; Lewis form; Modulus of complex frequency response;
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Times Cited By KSCI : 3  (Citation Analysis)
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1 Kim, K.B. & Lee, S.J., 2013. Natural Frequency of 2-Dimensional Heaving Circular Cylinder; Time Domain Analysis. Journal of the Society of Naval Architects of Korea, 50 (4), pp.224-231.   과학기술학회마을   DOI   ScienceOn
2 Lee, D.Y. & Lee, S.J., 2013. Natural Frequency of 2-Dimensional Heaving Circular Cylinder; Frequency Domain Analysis. Journal of the Society of Naval Architects of Korea, 50(2), pp.111-119.   과학기술학회마을   DOI   ScienceOn
3 Lee, S.J., 2008. Natural Frequency of 2-Dimensional Heaving Circular Cylinder. Journal of the Society of Naval Architects of Korea, 45(4), pp.389-395.   과학기술학회마을   DOI   ScienceOn
4 Lee, S.J. Kim, K.B. & Lee, D.Y., 2013. Natural frequency of heaving circular cylinder in the free surface. Proceedings of the Eighth International Workshop on Ship Hydrodynamics, Seoul, 23-25 September 2013, pp.A1-6.
5 Song, J.H., 2014. Natural Frequency of 2-Dimensional Heaving Cylinder; Frequency Domain Analysis. M.S. Thesis. Dept. Naval Architecture & Ocean Engineering, Chungnam National University.
6 Ursell, F., 1949. On the Heaving Motion of Circular Cylinder on the Surface of a Fluid. Quarterly Journal of Mechanics & Applied Mathematics, 2, pp.215-231.
7 Tasai, F., 1959. On the Damping Force and Added Mass of Ships Heaving and Pitching. Journal of the Society of Naval Architects of Japan, 105, pp.47-56.
8 The Society of Naval Architects of Korea, 1999. Calculations of Ship. Dongmyoung Publishers: Seoul.