Numerical Simulation of a Viscous Vortex Ring Interaction with a Density Interface

Numerical Simulation of a Viscous Vortex Ring Interaction with a Density Interface
Title Numerical Simulation of a Viscous Vortex Ring Interaction with a Density Interface PDF eBook
Author Daniel L. Marcus
Publisher
Pages
Release 1991
Genre
ISBN

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Numerical Simulation of a Viscous Vortex Ring Interaction with a Density Interface

Numerical Simulation of a Viscous Vortex Ring Interaction with a Density Interface
Title Numerical Simulation of a Viscous Vortex Ring Interaction with a Density Interface PDF eBook
Author
Publisher
Pages 18
Release 1990
Genre
ISBN

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When a vortex-dominated flow interacts with a sharp density interface, the dynamics are characterized by the interaction of baroclinically generated vorticity with the already existing vorticity field. This can be seen in many natural and technology settings; examples are the interaction of a ship or submarine wake with a thermocline, the collision of a buoyant thermal with a temperature inversion, and the interaction of a vortex flow with a flame front. This problem also serves as a generic model for turbulent mixing and entrainment processes across sharp density interfaces. The interaction between vortices and a free surface, with corresponds to the case where the density jump is very large, has been studied fairly extensively, both experimentally and computationally. By comparison, the literature for the more general case of vortex pairs and rings interacting with sharp density interfaces is relatively sparse. Experiments and numerical studies have been performed, but the numerical simulations were confined primarily to vortex pairs, restricted to the inviscid case, and the effect of density variation modeled under the Boussinesq approximation. The experiments were also confined to the Boussinesq regime. In this paper, we study the motion of a vortex ring in a sharply stratified, viscous fluid via a numerical solution of the full Navier-Stokes equations with finite-amplitude density variation. both Boussinesq and non-Boussinesq flow regimes will be studied, the effect of viscosity on the interaction will be examined, and three-dimensional aspects of the motion will be addressed, such as Widnall instability of the vortex ring and vortex reconnection at the interface.

Numerical Simulations of the Interactions of Vortices and Drops with Density Interfaces

Numerical Simulations of the Interactions of Vortices and Drops with Density Interfaces
Title Numerical Simulations of the Interactions of Vortices and Drops with Density Interfaces PDF eBook
Author Faical Tounsi
Publisher
Pages 272
Release 1995
Genre
ISBN

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Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports
Title Scientific and Technical Aerospace Reports PDF eBook
Author
Publisher
Pages 704
Release 1995
Genre Aeronautics
ISBN

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Vortex Ring Models

Vortex Ring Models
Title Vortex Ring Models PDF eBook
Author Ionut Danaila
Publisher Springer Nature
Pages 206
Release 2021-04-16
Genre Technology & Engineering
ISBN 3030681505

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This book offers a guide to understanding models of vortex rings, starting from classical ones (circular vortex filament, Hill and Norbury-Fraenkel inviscid models) to very recent models incorporating viscous effects and realistic shapes of the vortex core. Unconfined and confined viscous vortex rings are described by closed formulae for vorticity, stream function, translational velocity, energy, impulse and circulation. Models are applied to predict the formation number of optimal vortex rings and to describe two-phase vortex ring-like structures generated in internal combustion engines. The book provides a detailed presentation of analytical developments of models, backed up by illustrations and systematic comparisons with results of direct numerical simulations. The book is useful for graduate students in applied mathematics, engineering and physical sciences. It is a useful reference for researchers and practising engineers interested in modelling flows with vortex rings.

Fluid Vortices

Fluid Vortices
Title Fluid Vortices PDF eBook
Author Sheldon Green
Publisher Springer Science & Business Media
Pages 905
Release 2012-12-06
Genre Technology & Engineering
ISBN 940110249X

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Fluid Vortices is a comprehensive, up-to-date, research-level overview covering all salient flows in which fluid vortices play a significant role. The various chapters have been written by specialists from North America, Europe and Asia, making for unsurpassed depth and breadth of coverage. Topics addressed include fundamental vortex flows (mixing layer vortices, vortex rings, wake vortices, vortex stability, etc.), industrial and environmental vortex flows (aero-propulsion system vortices, vortex-structure interaction, atmospheric vortices, computational methods with vortices, etc.), and multiphase vortex flows (free-surface effects, vortex cavitation, and bubble and particle interactions with vortices). The book can also be recommended as an advanced graduate-level supplementary textbook. The first nine chapters of the book are suitable for a one-term course; chapters 10--19 form the basis for a second one-term course.

Numerical Study on Cut-and-connect of Three Dimensional Vortex Tubes

Numerical Study on Cut-and-connect of Three Dimensional Vortex Tubes
Title Numerical Study on Cut-and-connect of Three Dimensional Vortex Tubes PDF eBook
Author H. L. Chen
Publisher
Pages 68
Release 1991
Genre Vortex motion
ISBN

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In the present study, generation of two vortex rings and their cut-and-connect process were numerically simulated by solving three-dimensional and time-dependent Navier-Stokes equations, under conditions similar to the laboratory experiment. In order to explain the mechanism of cut-and-connect, velocity, vorticity, pressure, helicity density and energy dissipation were examined for the flow field of the cut-and-connect of vortex rings. The present study revealed that energy dissipation is an essential process for circulation cancellation during vortex tubes cutting. Based on this energy dissipation mechanism, it is concluded that the cut-and-connect of vortex tubes may occur in the limit of inviscid flows. This conclusion is particularly important to the three-dimensional discrete vortex method for computing high Reynolds number flows. Features of helicity in the three-dimensional flow field of cut-and-connect process of vortex tubes were also investigated. The relation between the helicity density and the energy dissipation function in the three-dimensional flow field was examined.