supported by the Natural National Science Foundation of China(Grant No.50809065);the National Science Foundation of Shangdong Province(Grant No. Q2007E05);supported by the Project from Korea Ocean Research and Development Institute "Study on wave-curre interaction and development of local wave and wave Setup prediction model"
The hydrodynamic model COHERENS-SED, developed by the present authors through introducing wave-enhanced bottom stress, wave dependent surface drag coefficient, wave-induced surface mixing, SWAN to COHERENS, is modifie...
supported by the National Natural Science Foundation of China (Grant No. 50809065);the Ministry of Education Fund for New Teachers (Grant No. 200804231039)
This article analyzes the vertical structure of the onshore current including the wave-induced current by an equation developed for the radiation stress against water depth.A coupled model COHERENS-SED is adopted to c...
the National Basic Research Program of China (973 Program Grant No. 2002CB412408);the National Science Foundation of Shangdong Province (Grant No. Q2007E05).
The present work adopts the COHERENS-SWAN model developed by the first author through coupling three-dimensional hydrodynamic model (COHERENS) and third-generation wave model (SWAN). Inside the COHERENS-SWAN, the ...
Project supported by 973 Project (Grant No: 2002CB412408) and the Natural Science Foundation of Qingdao (Grant No: 03-jr-15).
The effects of waves on Surface Drag Coefficient (SDC) and surface mixing length were analyzed and discussed by carrying out three-dimensional current modeling for the Bohai Sea in the present work. A threedimension...
The coupled hydrodynamical-ecological model for Regional and Shelf Seas Coherens was modified through introducing sediment model in order to simulate suspended sediment transport and account for the interaction betwee...