Title
Numerical simulation of spectrum wave propagating in pseudo three dimensional wave basin
Abstract
The convention method of berthing stability study by physical scaled model was replaced by purely numerical model based on modified Boussinesq type wave equations in the paper. Directional spectrum wind wave was generated in pseudo three dimensional numerical wave basin. In front of vertical walls, typical reflection coefficient of 0.80 was introduced, and around the sloped breakwaters the reflection coefficients of 0.50~0.60 were applied. The calculation domain was a real fishing port with directional wind wave incoming from Southeast, and South, Southwest. By purely numerical method, the berthing stability was studied in accordance with the Code of Hydrology for Sea Harbor, China (“the Code”). It is concluded the numerical model is of satisfactory accuracy and can be of engineering reference value in the design and planning of coastal structures and harbors.
Year
DOI
Venue
2011
10.1109/ICNC.2011.6022598
ICNC
Keywords
Field
DocType
coastal structures,spectrum wave,physical scaled model,numerical model,china,breakwater,numerical analysis,boussinesq equations,modified boussinesq type wave equations,numercial model,vertical walls,numerical method,wind,fishing port,ocean waves,reflection coefficient,sloped breakwaters,pseudo3d numerical wave basin,numerical simulation,geotechnical engineering,oceanographic techniques,engineering reference value,berthing stability,directional spectrum wind wave,code of hydrology for sea harbor,wave propagation,wind wave,stability analysis,wave equation,reflection,boussinesq equation,numerical stability,three dimensional,mathematical model,spectrum
Wind wave,Mathematical optimization,Computer simulation,Computer science,Wind wave model,Reflection coefficient,Wave equation,Numerical analysis,Geometry,Numerical stability,Boussinesq approximation (water waves)
Conference
Volume
Issue
ISSN
4
null
2157-9555
ISBN
Citations 
PageRank 
978-1-4244-9950-2
0
0.34
References 
Authors
1
3
Name
Order
Citations
PageRank
Xi Li12212.44
Chen-Cheng Xi200.68
Xiang Lin3418.78