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In this paper, we propose an analytical framework for internal hydraulic jumps. Density jumps or internal hydraulic jumps occur when a supper critical flow of water discharges into a stagnant layer of water with slightly different density.…

Fluid Dynamics · Physics 2013-12-12 Bahar Firoozabadi , Milad Samie , Asghar Aryanfar , Hossein Afshin

When a fluid jet strikes an inclined solid surface at normal incidence, gravity creates a flow pattern with a thick outer rim resembling a parabola and reminiscent of a hydraulic jump. There appears to be little theory or experiments…

Fluid Dynamics · Physics 2010-09-02 Jean-Luc Thiffeault , Andrew Belmonte

The formation of a planar hydraulic jump has been analysed in the framework of a full depth-averaged thin film model (DAM) with surface tension effects included. We have demonstrated regular weak solutions of the full DAM and analysed…

Fluid Dynamics · Physics 2021-06-09 Alex V. Lukyanov , Tristan Pryer , Edward Calver

When a falling jet of fluid strikes a horizontal fluid layer, a hydraulic jump arises downstream of the point of impact provided a critical flow rate is exceeded. We here examine a phenomenon that arises below this jump threshold, a…

Fluid Dynamics · Physics 2014-03-06 Matthieu Labousse , John W. M. Bush

We present the results of some experiments on the circular hydraulic jump in normal and superfluid liquid helium. The radius of the jump and the depth of the liquid outside the jump are measured through optical means. Although the scale of…

Fluid Dynamics · Physics 2009-11-11 Etienne Rolley , Claude Guthmann , Michael S. Pettersen , Christophe Chevallier

Results from large-eddy simulations of a classical hydraulic jump at inlet Froude number 2 are reported. The computations are performed using the general-purpose finite-volume based code OpenFOAM, and the primary goal is to evaluate the…

Fluid Dynamics · Physics 2020-07-06 Timofey Mukha , Silje Kreken Almeland , Rickard E. Bensow

In the presence of viscosity the hydraulic jump in one dimension is seen to be a first-order transition. A scaling relation for the position of the jump has been determined by applying an averaging technique on the stationary hydrodynamic…

Other Condensed Matter · Physics 2016-08-31 Subhendu B. Singha , Jayanta K. Bhattacharjee , Arnab K. Ray

Recently, an unusual scaling law has been observed in circular hydraulic jumps and has been attributed to a supposed missing term in the local energy balance of the flow [\cite{bhagat_2018}]. In this paper, we show that - though the…

Fluid Dynamics · Physics 2022-03-14 Alexis Duchesne , Laurent Limat

Hydraulic jumps are oftentimes encountered in natural and human-made environments. The transition from supercritical to subcritical flow involves large energy dissipation rates and substantial air entrainment, preventing the use of…

Fluid Dynamics · Physics 2022-04-26 Matthias Kramer , Daniel Valero

Hydraulic jumps in thin films are traditionally explained through gravity-driven shallow-water theory, with surface tension assumed to play only a secondary role via Laplace pressure. Recent experiments, however, suggest that surface…

Fluid Dynamics · Physics 2025-12-17 Rajesh Kumar Bhagat

For more than a century, the consensus has been that the thin-film hydraulic jump that can be seen in kitchen sinks is created by gravity. However, we recently reported that these jumps are created by surface tension, and gravity does not…

Fluid Dynamics · Physics 2021-07-06 Rajesh K. Bhagat , D. Ian Wilson , P. F. Linden

We inroduce a new model for Bingham fluids with a complicated dependence of the deformation velocity on the shear stress. Specific features of the flow rate for such fluid are studied. This model embraces many special and limiting cases,…

Fluid Dynamics · Physics 2010-02-05 N. G. Domostroeva , N. N. Trunov

We impose a linearized Eulerian perturbation on a steady, shallow, radial outflow of a liquid (water), whose local pressure function includes both the hydrostatic and the Laplace pressure terms. The resulting wave equation bears the form of…

Fluid Dynamics · Physics 2022-11-08 Jayanta K. Bhattacharjee , Arnab K. Ray

The immersed interface method (IIM) for fluid-structure interaction imposes discontinuities in the fluid stress along immersed boundaries that are generated by forces concentrated along those boundaries. For a viscous incompressible fluid,…

Numerical Analysis · Mathematics 2026-03-10 Michael J. Facci , Qi Sun , Boyce E. Griffith

We consider a special type of hydraulic jumps (internal bores) which, in the vertically bounded system of two immiscible fluids with slightly different densities, conserve not only the mass and impulse but also the circulation and energy.…

Fluid Dynamics · Physics 2023-05-23 Jānis Priede

We carry out an analytical study of laminar circular hydraulic jumps, in generalized-Newtonian fluids obeying the two-parametric power-law model of Ostwald-de Waele. Under the boundary-layer approximation we obtained exact expressions…

Fluid Dynamics · Physics 2008-09-22 Ashutosh Rai , B. S. Dandapat , Swarup Poria

We conduct a numerical study of the transient phenomenon in pipelines transporting plastic Bingham slurry flows, using a lowest-order finite element method (FEM). While most pipeline hammer studies focus on Newtonian fluids, the transient…

Fluid Dynamics · Physics 2025-07-28 Felipe Galarce , Francisco Martinez

Continuing our investigation into the numerical properties of the Hierarchical Reference Theory, we study the square well fluid of range lambda from slightly above unity up to 3.6. After briefly touching upon the core condition and the…

Condensed Matter · Physics 2009-11-07 Albert Reiner , Gerhard Kahl

On the basis of the viscous Saint-Venant equations, hydraulic jumps in laminar open channel flow are obtained as continuous shock structures. Thanks to the inclusion of viscosity, the jumps are not abrupt, rendering the classic patchwork…

Fluid Dynamics · Physics 2021-07-01 Dimitrios Razis , Giorgos Kanellopoulos , Ko van der Weele

We derive an expression for the velocity profile of a pressure-driven yield-stress Bingham fluid flowing around a 2D concentric annulus. The formula requires the numerical solution of a nonlinear equation for the positions of the yield…

Fluid Dynamics · Physics 2019-09-16 Tirion G. Roberts , Simon J. Cox
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