Article ID Journal Published Year Pages File Type
4525378 Advances in Water Resources 2015 13 Pages PDF
Abstract

•The Preissmann slot concept is extended to 2D unsteady mixed flows.•A lattice of normally intersecting slots is added on the ceiling of the closed system.•A 2D model is derived based on a modified set of shallow water equations.•The model is validated on the basis of 1D exact solutions and test cases with cylindrical symmetry.•The model is suitable for near-field simulations around and under closed structures (such as bridges or culverts).

This paper presents an extension of the Preissmann slot concept for the modeling of highly transient two-dimensional (2D) mixed flows. The classic conservative formulation of the 2D shallow water equations for free surface flows is adapted by assuming that two fictitious vertical slots, aligned along the two Cartesian plane directions and normally intersecting, are added on the ceiling of each integration element. Accordingly, transitions between free surface and pressurized flow can be handled in a natural and straightforward way by using the same set of governing equations. The opportunity of coupling free surface and pressurized flows is actually useful not only in one-dimensional (1D) problems concerning sewer systems but also for modeling 2D flooding phenomena in which the pressurization of bridges, culverts, or other crossing hydraulic structures can be expected. Numerical simulations are performed by using a shock-capturing MUSCL-Hancock finite volume scheme combined with the FORCE (First-Order Centred) solver for the evaluation of the numerical fluxes. The validation of the mathematical model is accomplished on the basis of both exact solutions of 1D discontinuous initial value problems and reference radial solutions of idealized test cases with cylindrical symmetry. Furthermore, the capability of the model to deal with practical field-scale applications is assessed by simulating the transit of a bore under an arch bridge. Numerical results show that the proposed model is suitable for the prediction of highly transient 2D mixed flows.

Related Topics
Physical Sciences and Engineering Earth and Planetary Sciences Earth-Surface Processes
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