4.4 Article

Study on Transient Gap Resonance with Consideration of the Motion of Floating Body

期刊

CHINA OCEAN ENGINEERING
卷 36, 期 6, 页码 994-1006

出版社

CHINA OCEAN PRESS
DOI: 10.1007/s13344-022-0087-7

关键词

transient gap resonance; focused waves; free-surface amplification; wave loads; heave motion; OpenFOAM

资金

  1. National Natural Science Foundation of China [51911530205]
  2. Natural Science Foundation of Jiangsu Province [BK20201455, BK20210885]
  3. Key Laboratory of Port, Waterway and Sedimentation Engineering of MOT [YK222001-2]
  4. Shandong Provincial Key Laboratory of Ocean Engineering [kloe202010]
  5. Key RAMP
  6. D Projects in Guangdong Province [2020B1111500001]
  7. Qing Lan Project of Jiangsu Universities
  8. Royal Society [IEC\NSFC\181321]

向作者/读者索取更多资源

In this study, the transient fluid resonance phenomenon inside a narrow gap between two adjacent boxes is simulated using the open-sourced computational fluid dynamics software, OpenFOAM. It is found that the motion of the weather-side box significantly affects the characteristics of the transient gap resonance, and the relevant physical quantities closely depend on both the spectral peak period and the focused wave amplitude.
In this paper, the transient fluid resonance phenomenon inside a narrow gap between two adjacent boxes excited by the incident focused waves with various spectral peak periods and focused wave amplitudes is simulated by utilizing the open-sourced computational fluid dynamics software, OpenFOAM. The weather-side box is allowed to heave freely under the action of waves, and the lee-side box keeps fixed. This paper mainly focuses on how both the spectral peak period and the focused wave amplitude affect the free-surface amplification inside the gap, the motion of the weather-side box, and the wave loads (including the vertical and the horizontal wave forces) acting on both boxes. For comparison, another two-box system with both boxes fixed is also considered as a control group. It is found that the motion of the weather-side box significantly changes the characteristics of the transient gap resonance, and it would cause that the fluid resonant period becomes 1.4-1.6 times that of the two-box system with both boxes fixed. All the concerned physical quantities (i.e., the free-surface amplification in the gap, the motion of the weather-side box, the wave loads) are found to closely depend on both the spectral peak period and the focused wave amplitude.

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