Zhiguo He, Ph.D.

Affiliations: 
2007 The University of Mississippi, USA 
Area:
Civil Engineering
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"Zhiguo He"

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Weiming Wu grad student 2007 The University of Mississippi
 (Numerical simulation of flow, sediment, and contaminant transport in integrated surface -subsurface systems.)
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Publications

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Pan J, He Z, Shih W, et al. (2020) Numerical modeling of scour and deposition around permeable cylindrical structures International Journal of Sediment Research. 35: 278-286
Hu P, Xie J, Li W, et al. (2020) A RANS numerical study of experimental swash flows and its bed shear stress estimation Applied Ocean Research. 100: 102145
Zhao L, Yu C, He Z. (2019) Numerical modeling of lock-exchange gravity/turbidity currents by a high-order upwinding combined compact difference scheme International Journal of Sediment Research. 34: 240-250
Hu P, Lei Y, Han J, et al. (2019) Computationally efficient modeling of hydro-sediment-morphodynamic processes using a hybrid local time step/global maximum time step Advances in Water Resources. 127: 26-38
Hu P, Han J, Li W, et al. (2018) Numerical investigation of a sandbar formation and evolution in a tide-dominated estuary using a hydro-morphodynamic model Coastal Engineering Journal. 60: 466-483
Li L, He Z, Xia Y, et al. (2018) Dynamics of sediment transport and stratification in Changjiang River Estuary, China Estuarine Coastal and Shelf Science. 213: 1-17
Wu G, He Z, Zhao L, et al. (2018) A well-balanced positivity preserving two-dimensional shallow flow model with wetting and drying fronts over irregular topography Journal of Hydrodynamics. 30: 618-631
Li L, Ye T, He Z, et al. (2018) A numerical study on the effect of tidal flat’s slope on tidal dynamics in the Xiangshan Bay, China Acta Oceanologica Sinica. 37: 29-40
Rusdiansyah A, Tang Y, He Z, et al. (2018) The impacts of the large-scale hydraulic structures on tidal dynamics in open-type bay: numerical study in Jakarta Bay Ocean Dynamics. 68: 1141-1154
He Z, Wu T, Weng H, et al. (2017) Numerical simulation of dam-break flow and bed change considering the vegetation effects International Journal of Sediment Research. 32: 105-120
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