scholarly journals Simulation of Wave Overtopping of Maritime Structures in a Numerical Wave Flume

2012 ◽  
Vol 2012 ◽  
pp. 1-19 ◽  
Author(s):  
Tiago C. A. Oliveira ◽  
Agustín Sánchez-Arcilla ◽  
Xavier Gironella

A numerical wave flume based on the particle finite element method (PFEM) is applied to simulate wave overtopping for impermeable maritime structures. An assessment of the performance and robustness of the numerical wave flume is carried out for two different cases comparing numerical results with experimental data. In the first case, a well-defined benchmark test of a simple low-crested structure overtopped by regular nonbreaking waves is presented, tested in the lab, and simulated in the numerical wave flume. In the second case, state-of-the-art physical experiments of a trapezoidal structure placed on a sloping beach overtopped by regular breaking waves are simulated in the numerical wave flume. For both cases, main overtopping events are well detected by the numerical wave flume. However, nonlinear processes controlling the tests proposed, such as nonlinear wave generation, energy losses along the wave propagation track, wave reflection, and overtopping events, are reproduced with more accuracy in the first case. Results indicate that a numerical wave flume based on the PFEM can be applied as an efficient tool to supplement physical models, semiempirical formulations, and other numerical techniques to deal with overtopping of maritime structures.

2007 ◽  
Vol 54 ◽  
pp. 951-955 ◽  
Author(s):  
Koji KAWASAKI ◽  
Masami KIKU ◽  
Kazuya MAEZATO ◽  
Toshihiko KOMESU ◽  
Hiroshi SHIMADA ◽  
...  

2019 ◽  
Author(s):  
STEF BOERSEN ◽  
OLAF SCHOLL ◽  
NIELS JACOBSEN ◽  
COCK VAN DER LEM

2012 ◽  
Vol 204-208 ◽  
pp. 4971-4977
Author(s):  
Ya Mei Lan ◽  
Wen Hua Guo ◽  
Yong Guo Li

The CFD software FLUENT was used as the foundation to develop the numerical wave flume, in which the governing equations are the Reynolds-averaged Navier-Stokes (RANS) equations and the standard k~ε turbulence model. The wave generating and absorbing were introduced into the RANS equations as the source terms using the relaxation approach. A new module of the wave generating and absorbing function, which is suitable for FLUENT based on the volume of fluid method (VOF), was established. Within the numerical wave flume, the reflected waves from the model within the computation domain can be absorbed effectively before second reflection appears due to the wave generating boundary. The computational results of the wave pressures on the bottom of the rectangular slab were validated for the different relative clearance by the experimental data. Good agreements were found.


2001 ◽  
Vol 17 ◽  
pp. 281-286
Author(s):  
Toshihiko Takahashi ◽  
Koji Fujima ◽  
Ryosuke Asakura ◽  
Tsuyoshi Ikeya

1999 ◽  
Vol 15 ◽  
pp. 321-326 ◽  
Author(s):  
M. Isobe ◽  
S. Takahashi ◽  
S. P. Yu ◽  
T. Sakakiyama ◽  
K. Fujima ◽  
...  

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