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Numerical Simulation on Extreme Water Waves by Using New HLIGN-3 Deep Water Equations
A new velocity assumption along water depth for deep water waves was developed in the Green-Naghdi wave model. This new velocity assumption could also be used in HLIGN (High Level Irrotational Green-Naghdi) wave model. The new HLIGN-3 deep water equations are used here to simulate large regular waves and results are compared with fully nonlinear stream function wave theory. The new HLIGN-3 deep water equations are also used to simulate focus waves and results are compared with others’ experimental data and numerical results.
Numerical Simulation on Extreme Water Waves by Using New HLIGN-3 Deep Water Equations
A new velocity assumption along water depth for deep water waves was developed in the Green-Naghdi wave model. This new velocity assumption could also be used in HLIGN (High Level Irrotational Green-Naghdi) wave model. The new HLIGN-3 deep water equations are used here to simulate large regular waves and results are compared with fully nonlinear stream function wave theory. The new HLIGN-3 deep water equations are also used to simulate focus waves and results are compared with others’ experimental data and numerical results.
Numerical Simulation on Extreme Water Waves by Using New HLIGN-3 Deep Water Equations
Lecture Notes in Civil Engineering
Yang, Desen (Herausgeber:in) / Xie, Xu (Autor:in) / Zhao, Binbin (Autor:in) / Duan, Wenyang (Autor:in)
International Conference on Marine Equipment & Technology and Sustainable Development ; 2023 ; Beijing, China
2023 International Conference on Marine Equipment & Technology and Sustainable Development ; Kapitel: 56 ; 808-817
02.08.2023
10 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
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