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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
이우동박종률전호성허동수
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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