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pro vyhledávání: '"Mohsen H. Moghimi"'
Autor:
Mohsen H. Moghimi, Nathan J. Quinlan
Publikováno v:
Engineering Analysis with Boundary Elements. 106:126-138
Lagrangian particle methods such as smoothed particle hydrodynamics (SPH) and the finite volume particle method (FVPM) can suffer from non-physical voids in the spatial discretisation, due to the inability of numerical particles to deform as continuu
Autor:
Nathan J. Quinlan, Mohsen H. Moghimi
Publikováno v:
Computers & Fluids. 179:521-532
A surface tension model has been developed in the finite volume particle method (FVPM). FVPM is a conservative, consistent, meshless particle method that incorporates properties of both smoothed particle hydrodynamics and the mesh-based finite volume
Autor:
Mohsen H. Moghimi, Nathan J. Quinlan
Publikováno v:
Computers & Fluids. 236:105321
Autor:
Mohsen H. Moghimi
Publikováno v:
Research in Astronomy and Astrophysics. 12:693-702
The left-hand side of the auroral hiss emission observed by Galileo has a frequency time shaped very similar to the funnel shape observed in the earth's auroral region. This close similarity indicates that we can use the whistler-mode propagation nea
Publikováno v:
Research in Astronomy & Astrophysics; Jun2012, Vol. 12 Issue 6, p693-702, 10p