supported by the National Natural Science Foundation of China(Grant Nos.51379125,51411130131 and 11272120);the National Key Basic Research Development of China(973 Program,Grant No.2013CB036103);the High Te-chnology of Marine Research Project of the Ministry of Indu-stry and the Information Technology of China;the Program for Professor of Special Appointment(Eastern Scholar)at Shanghai Institutions of Higher Learning(Grant No.2013022)
This paper presents a comparative study of a meshless level-set method in the simulation of sloshing flows. The numerical moving particle semi-implicit (MPS) method and a grid based schemes of the MPS and level-set ...
Financial support from the 12th "Five-Year Plan" National Key Technologies R&D Program of China (2012BAB05B01);National Natural Science Foundation of China(51109009,51009012,51039003);National Key Basic Research Program of China(2007CB714100)
A semi-implicit 3-D numerical formulation for solving non-hydrostatic pressure free-surface flows on an unstructured, sigma grid is proposed. Pressure-splitting and 0 semi-implicit methods are inherited and reformed f...
The Major State Basic Research Program of China under contract No. 2012CB417002;the National Natural Science Foundation of China under contract Nos 50909065 and 51109039
A new three-dimensional semi-implicit finite-volume ocean model has been developed for simulating the coastal ocean circulation, which is based on the staggered C-unstructured non-orthogonal grid in the hor- izontal d...
financially supported by the National Natural Science Foundation of China(Grant Nos.50909065 and 51109039);the Major State Basic Research Program of China(973 Program,Grant No.2012CB417002)
A two-dimensional coastal ocean model based on unstructured C-grid is built, in which the momentum equation is discretized on the faces of each cell, and the continuity equation is discretized on the cell. The model i...
Project supported by the National Key Basic Research Program of China (973 Program, Grant No. 2007CB714100);the Key Project of National Natural Science Foundation of China (Grant No. 51039003);supported by the Yangtze River Scientific Research Institute project (Grant No. CKSQ2010075)
A 3-D numerical formulation is proposed on the horizontal Cartesian, vertical sigma-coordinate grid for modeling non-hydrostatic pressure flee-surface flows. The pressure decomposition technique and 0 semi-implicit me...
supported by the Eleventh"Five-Year Plan" Science and Technology Program of China(Grant No. 2008BAB29B08);the National Key Basic Research Program of China(973 Program,Grant No.2007CB714100);supported by the Yangtze River Scientific Research Institute project(Grant No.CKSQ2010075)
The main river, the Dongting Lake and river networks in the Jingjiang reach of the Yangtze River constitute a complex water system, for which a full 2-D hydrodynamic model is established instead of the traditional 1-D...
Supported by the Ministry of Science and Technology of China (Grant Nos 2006BAC02B01 and 2006BAC03B03);the National High Technology Research and Development Program of China (863 Program) (Grant No 2006AA01A123)
The Global/Regional Assimilation and PrEdiction System(GRAPES) is a newly developed global non-hydrostatic numerical prediction model,which will become the next generation medium-range opera-tional model at China Mete...