Search results for "Kelvin wave"

showing 6 items of 6 documents

Classification of intense rainfall days in southern West Africa and associated atmospheric circulation.

2020

Daily rainfall in southern West Africa (4&ndash

Atmospheric ScienceGulf of Guinea010504 meteorology & atmospheric sciencesAtmospheric circulation0207 environmental engineering02 engineering and technologylcsh:QC851-999Environmental Science (miscellaneous)01 natural sciencesWest africaTropospheresymbols.namesakeWest AfricaPrecipitation020701 environmental engineering0105 earth and related environmental sciencesintense rainfallTropical waveEquatorial wavesequatorial wavescoastal climates13. Climate action[SDU.STU.CL]Sciences of the Universe [physics]/Earth Sciences/ClimatologyClimatologysymbolsPrecipitation typeslcsh:Meteorology. ClimatologyKelvin waveGeology
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Effective temperature and scaling laws of polarized quantum vortex bundles

2011

Abstract An effective non-equilibrium temperature is defined for (locally) polarized and dense turbulent superfluid vortex bundles, related to the average energy of the excitations (Kelvin waves) of vortex lines. In the quadratic approximation of the excitation energy in terms of the wave amplitude A, a previously known scaling relation between amplitude and wavelength k of Kelvin waves in polarized bundles, namely A ∝ k − 1 / 2 , follows from the homogeneity of the effective temperature. This result is analogous to that of the well-known equipartition result in equilibrium systems.

PhysicsCondensed matter physicsNon-equilibrium temperature Turbulent superfluids Vortices Scaling laws Non-equilibrium thermodynamicsQuantum vortexGeneral Physics and AstronomyNon-equilibrium thermodynamicsVortexsymbols.namesakeWavelengthAmplitudesymbolsKelvin waveScalingSettore MAT/07 - Fisica MatematicaEquipartition theorem
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Nonlinear Kelvin waves on a quantized vortex line in superfluid helium

2013

In this paper we show an exact solution (Kelvin wave) of an approximated dynamical equation for a quantized vortex line in helium superfluid at finite temperature. It is shown that the applied heat flux interacts with the vortex line, and the amplitude of the Kelvin wave can grow (the so-called Donnelly instability) or decrease according with the mutual direction between heat flux and wave vector.

Kelvin waves vortex filament superfluid helium eulerian fluid.Settore MAT/07 - Fisica Matematica
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Waves on a vortex filament: exact solutions of dynamical equations

2014

In this paper we take into account the dynamical equations of a vortex filament in superfluid helium at finite temperature (1 K < T < 2.17 K) and at very low temperature, which is called Biot-Savart law. The last equation is also valid for a vortex tube in a frictionless, unbounded and incompressible fluid. Both the equations are approximated by the Local Induction Approximation (LIA) and Fukumoto's approximation. The obtained equations are then considered in the extrinsic frame of reference, where exact solutions (Kelvin waves) are shown. These waves are then compared one to each other in terms of their dispersion relations in the frictionless case. The same equations are then investigated…

PhysicsVortex tubeApplied MathematicsGeneral MathematicsGeneral Physics and Astronomysuperfluid helium.MechanicsVortexKelvin wavesymbols.namesakeClassical mechanicsDispersion relationCompressibilitysymbolsvortex filamentSeries expansionSettore MAT/07 - Fisica MatematicaKelvin waveEquations for a falling bodySuperfluid helium-4Zeitschrift für angewandte Mathematik und Physik
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Vortex length, vortex energy and fractal dimension of superfluid turbulence at very low temperature

2010

By assuming a self-similar structure for Kelvin waves along vortex loops with successive smaller scale features, we model the fractal dimension of a superfluid vortex tangle in the zero temperature limit. Our model assumes that at each step the total energy of the vortices is conserved, but the total length can change. We obtain a relation between the fractal dimension and the exponent describing how the vortex energy per unit length changes with the length scale. This relation does not depend on the specific model, and shows that if smaller length scales make a decreasing relative contribution to the energy per unit length of vortex lines, the fractal dimension will be higher than unity. F…

Statistics and ProbabilityLength scalePhysicsfractal dimensionScale (ratio)TurbulenceFOS: Physical sciencesGeneral Physics and AstronomyStatistical and Nonlinear PhysicsMechanicsFractal dimensionSuperfluid turbulenceVortexCondensed Matter - Other Condensed MatterSuperfluiditysymbols.namesakeModeling and SimulationsymbolsKelvin waveScalingSettore MAT/07 - Fisica MatematicaMathematical PhysicsOther Condensed Matter (cond-mat.other)vortice
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PERANAN GELOMBANG PANJANG TERHADAP SIRKULASI ARUS GLOBAL

2008

The global surface current system forms a large scala current circulation pattern known as gyra, which occurs in the Pasific, Hindia, and Atlantic oceans. At the nothern equator, the gyra circulation is counterclockwise, while it is anti counterclockwise at the southern equator. The trade wind crossing the Equatorial ocean causes a different slope and influences the slope form. The response of the sea level slope can be only described by the sea level pertubation concept that the disturbance moves as pulse wave which travel alongside equatorial ocean. The effects of the Rossby and Kelvin waves propagation on the ocean circulation depend on the lattitude. At the middle and high lattitudes, t…

Ocean currentEquatorRossby waveWind stressGeophysicsPhysics::GeophysicsLatitudesymbols.namesakesymbolsKelvin wavePhysics::Atmospheric and Oceanic PhysicsGeologySea levelEquatorial Rossby waveJurnal Natural
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