Search results for "Flow turbulence"

showing 10 items of 13 documents

Experimental Analysis of Horizontal Turbulence of Flow over Flat and Deformed Beds

2015

Abstract Laboratory experiments in a straight flume were carried out to examine the evolution of large-scale horizontal turbulent structures under flat-bed and deformed-bed conditions. In this paper, the horizontal turbulence of flow under these conditions is analyzed and compared. The conditioned quadrant method is applied to verify the occurrence of turbulent events. The distributions of horizontal Reynolds shear stress and turbulent kinetic energy are also presented and discussed. Results show the occurrence of an “initial” sequence of horizontal vortices whose average spatial length scales with the channel width. Under deformed-bed conditions, this spatial length does not change.

MeteorologyTurbulenceK-epsilon turbulence modelFlow (psychology)Bed formBurst cycleMechanicsLaboratory experimentVortexOpen-channel flowQuadrant (plane geometry)Physics::Fluid DynamicsFlumeFlow turbulence structureTurbulence kinetic energyOpen-channel flowGeologyWater Science and TechnologyCivil and Structural EngineeringArchives of Hydro-Engineering and Environmental Mechanics
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Turbulence structure and coherent motion in a straight laboratory flume

2012

Open channel flow flow turbulence structure burst cycle walls roughness laboratory experimentsSettore ICAR/01 - Idraulica
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Evolution of coherent turbulent structures and relation with bed-forms formation in a straight flume

2008

The present paper describes some results of experimental work carried out in a rectilinear flume to investigate the interactions between flow turbulence and sediment motion. The analysis is conducted through the comparison between the periodicity of turbulent structures evolving along the channel and the wavelength of bed forms (alternate bars) forming on the bed. The occurrence of turbulent events (inward interaction, ejection, sweep and burst) has been verified through the conditioned quadrant analysis. The quantitative information about the spatial and temporal scale of the events has been obtained through the space-time correlations of the conditioned data. The analysis essentially high…

Open channel flow sediment transport bed-forms flow turbulence structureSettore ICAR/01 - Idraulica
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Alternative Vinen equation and its extension to rotating counterflow superfluid turbulence

2007

Two alternative Vinen's evolution equations for the vortex line density L in counterflow superfluid turbulence, are physically admissible and lead to analogous results in steady states. In Phys. Rev. B, 69, 094513 (2004) the most used of them was generalized to counterflow superfluid turbulence in rotating containers. Here, the analogous generalization for the alternative Vinen's equation is proposed. Both generalized Vinen's equations are compared with the experimental results, not only in steady-states but also in some unsteady situations. From this analysis follows that the solutions of the alternative Vinen's equation tend significantly faster to the corresponding final steady state val…

PhysicsCondensed Matter::OtherTurbulenceGeneralizationFOS: Physical sciencesTourbillonCondensed Matter PhysicsRotationSuperfluid turbulenceElectronic Optical and Magnetic MaterialsVortexCondensed Matter - Other Condensed MatterSuperfluidityVortex tangleClassical mechanicsRotating counterflow turbulenceLine (geometry)Electrical and Electronic EngineeringSettore MAT/07 - Fisica MatematicaSuperfluid helium-4Other Condensed Matter (cond-mat.other)Physica B: Condensed Matter
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Non-equilibrium thermodynamics analysis of rotating counterflow superfluid turbulence

2010

In two previous papers two evolution equations for the vortex line density $L$, proposed by Vinen, were generalized to rotating superfluid turbulence and compared with each other. Here, the already generalized alternative Vinen equation is extended to the case in which counterflow and rotation are not collinear. Then, the obtained equation is considered from the viewpoint of non-equilibrium thermodynamics. According with this formalism, the compatibility between this evolution equation for $L$ and that one for the velocity of the superfluid component is studied. The compatibility condition requires the presence of a new term dependent on the anisotropy of the tangle, which indicates how the…

PhysicsFriction forceTurbulenceCondensed Matter::OtherNon-equilibrium thermodynamicsFOS: Physical sciencessuperfluid turbulence Onsager-Casimir reciprocity relation rotating counterflow turbulenceVortexComputer Science ApplicationsSuperfluidityCondensed Matter - Other Condensed MatterFormalism (philosophy of mathematics)Classical mechanicsModeling and SimulationModelling and SimulationEvolution equationAnisotropySettore MAT/07 - Fisica MatematicaOther Condensed Matter (cond-mat.other)
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Non-Equilibrium Thermodinamic analysis of rotating counterflow superfluid turbulence

2008

Two alternative evolution equations for the vortex line density L in counterflow superfluid turbulence in 4He were proposed by Vinen in 1958. These equations was recently generalized to counterflow superfluid turbulence in rotating containers. Here, according with the formalism of Non-Equilibrium Thermodynamics, the compatibility between the alternative Vinen equation as evolution equation for the vortex line density in rotating counterflow turbulence and the velocity of the superfluid component is studied. From the compatibility request a new term dependent on the anisotropy of the tangle arises.

Superfluid turbulence Onsager Casimir reciprocity relation Rotating counterflow turbulence
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Turbulent Flow Structures For Different Roughness Conditions of Channel Walls: Results of experimental investigation in laboratory flumes

2013

Walls roughnessFlow turbulence structureBurst cycleLaboratory experimentOpen channel flow
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Experimental Observation Of Turbulent Structures In A Straight Flume

2010

Experimental and theoretical studies of the structure of turbulence in open-channel flows have shown that the dynamics of the wall layer turbulence is dominated by the formation and growth of turbulent structures which evolve periodically as part of the so-called bursting phenomena. In the present paper experimental results obtained in a straight flume for different roughness conditions of the channel walls are described. The occurrence of turbulent events is verified by applying the conditioned quadrant analysis. The information about the spatial and temporal scales of the events is obtained through the space-time correlations of the conditioned data.

bed-formFlow turbulence structureSediment transportBoundary roughneOpen channel flowboundary roughnessSettore ICAR/01 - Idraulica
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EXPERIMENTAL ANALYSIS OF RELATION BETWEEN COHERENT TURBULENT STRUCTURES AND BED-FORMS FORMATION

2008

The present paper describes an experimental investigation on the interactions between flow turbulence and sediment motion. During the experiments, detailed measures of flow velocity components have been carried out using an Acoustic Doppler Velocimeter (ADV). The occurrence of turbulent events (inward interaction, ejection, sweep and burst) has been verified through the conditioned quadrant analysis. The quantitative information about the spatial and temporal evolution of turbulent events has been obtained through the space-time correlations of the conditioned data. As the primary objective was to analyse how turbulent structures influence the bed-forms formation, the spatial scale of turbu…

channel flow sediment transport bed-forms flow turbulence structureSettore ICAR/01 - Idraulica
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Flow velocity and turbulence intensity distribution in a vegetated straigth laboratory channel

2009

experimental analysiVegetationSettore ICAR/02 - Costruzioni Idrauliche E Marittime E Idrologiaflow turbulenceSettore ICAR/01 - Idraulica
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