Coupling an Underflow Model to a Three-Dimensional Hydrodynamic Model
- 1 October 2003
- journal article
- Published by American Society of Civil Engineers (ASCE) in Journal of Hydraulic Engineering
- Vol. 129 (10) , 748-757
- https://doi.org/10.1061/(asce)0733-9429(2003)129:10(748)
Abstract
A separate underflow model is coupled to the three-dimensional (3D) estuary and lake computer model. The underflow equations are solved on a two-dimensional (2D) grid underlying the 3D model grid. The underflow model entrains ambient water whose properties are given by the fluid properties of the bottom boundary cells in the 3D model. This new approach allows improved representation of underflow effects in z-coordinate models by reducing numerical convective entrainment. An idealized case is used to illustrate the benefits of the underflow model. Comparisons of model results and field data for a saline underflow event in Lake Ogawara and a cold-water underflow in Lake Kinneret demonstrate improved model capability in representing underflow events that are thin compared to the vertical grid scale.Keywords
This publication has 23 references indexed in Scilit:
- Entrainment and Turbulence in Saline Underflow in Lake OgawaraJournal of Hydraulic Engineering, 2001
- Hydrodynamics of Turbid Underflows. I: Formulation and Numerical AnalysisJournal of Hydraulic Engineering, 1999
- Numerical Investigation of Plunging Density CurrentJournal of Hydraulic Engineering, 1999
- Two-Dimensional Simulations of Contaminant Currents in Stratified ReservoirJournal of Hydraulic Engineering, 1998
- A Method for Improved Representation of Dense Water Spreading over Topography in Geopotential-Coordinate ModelsJournal of Physical Oceanography, 1997
- Density Currents Entering Lakes and ReservoirsJournal of Hydraulic Engineering, 1992
- Behavior of Density Currents on an InclineJournal of Hydraulic Engineering, 1986
- Mixing in ReservoirsPublished by Elsevier ,1979
- Experiments on the dynamics of a gravity current headJournal of Fluid Mechanics, 1978
- Turbulent entrainment in stratified flowsJournal of Fluid Mechanics, 1959