抄録
The hydrodynamic forces acting on a circular cylinder and a rectangular cylinder undergoing slow drift oscillation in regular waves were investigated experimentally and numerically. Forced oscillation tests with low frequency and large amplitude in regular waves and forced two-harmonic oscillation with combined low and high frequencies were carried out in the experimental study. In the numerical study a finite-difference method was used to simulate viscous flow around a two-dimensional oscillating cylinder. The results of experiments showed that a horizontal rectangular cylinder oscillating slowly in waves has much higher damping coefficients than one oscillating in two-harmonic mode, while the numerical study indicated that such differences in the damping coefficient arise partly from the different effects of one-direction harmonic flow and rotating flow on the vortex shedding caused by the slow drift oscillation.
本文言語 | 英語 |
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ページ(範囲) | 105-113 |
ページ数 | 9 |
ジャーナル | Journal of Marine Science and Technology |
巻 | 1 |
号 | 2 |
DOI | |
出版ステータス | 出版済み - 1996 |
!!!All Science Journal Classification (ASJC) codes
- 海洋学
- 海洋工学
- 材料力学
- 機械工学