쓰나미 파형이 수중식생의 에너지소산에 미치는 영향Effects of Tsunami Waveform on Energy Dissipation of Aquatic Vegetation
- Other Titles
- Effects of Tsunami Waveform on Energy Dissipation of Aquatic Vegetation
- Authors
- 이우동; 박종률; 전호성; 허동수
- Issue Date
- 2017
- Publisher
- 한국해양공학회
- Keywords
- Tsunami-vegetation interaction 쓰나미-식생 상호작용; Vegetation drag 식생항력; Tsunami waveform 쓰나미 파형; Wave energy dissipation 파랑에너지감쇠; Navier-Stoeks solver 나비어-스톡스 방정식 모델
- Citation
- 한국해양공학회지, v.31, no.2, pp 121 - 129
- Pages
- 9
- Indexed
- KCI
- Journal Title
- 한국해양공학회지
- Volume
- 31
- Number
- 2
- Start Page
- 121
- End Page
- 129
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/14842
- ISSN
- 1225-0767
2287-6715
- Abstract
- The present study numerically investigated the influence of the waveform distribution on the tsunami-vegetation interaction using a non-reflected wave generation system for various tsunami waveforms in a two-dimensional numerical wave tank. First, it was possible to determine the wave attenuation mechanism due to the tsunami-vegetation interaction from the spatial waveform, flow field, vorticity field, and wave height distribution. The combination of fluid resistance in the vegetation and a large gap and creates a vortex according to the flow velocity difference in and out of the vegetation zone. Thus, the energy of a tsunami was increasingly reduced, resulting in a gradual reduction in wave height. Compared to existing approximation theories, the double volumetric ratio of the waveform increased the reflection coefficient of the tsunami-vegetation interaction by 34%, while decreasing the transfer coefficient and energy attenuation coefficient by 25% and 13%, respectively. Therefore, the hydraulic characteristics of a tsunami is highly likely to be underestimated if the solitary wave of the approximation theory is applied for the tsunami.
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