Search results for "Magnetosphere particle motion"

showing 10 items of 11 documents

Analytical description of solid particles kinematics due to a fluid flow and application to the depiction of characteristic kinematics in cold sprayi…

2017

Abstract In several multiphase flow applications such as fluidization, thermal spraying, atomization manufacturing and so on, the Newton's law is widely enacted to formulate the particle/fluid kinematic interaction and then to compute particles kinematics. This paper provides analytical solutions of the Newton's law in its time-dependent formulation or simplified formulation, the latter being a reduction of the time dependent problem into a spatial description of the particle motion. It was found that the velocity solution is strictly similar in both cases so that the simplified formulation is viable. The W_ 1 branch of the Lambert's function yields the analytical particle residence time an…

010302 applied physicsChemistryGeneral Chemical EngineeringMultiphase flow02 engineering and technologyMechanicsKinematics021001 nanoscience & nanotechnologyResidence time (fluid dynamics)01 natural sciencessymbols.namesakeMach number0103 physical sciencesFluid dynamicssymbolsParticleParticle velocity0210 nano-technologyMagnetosphere particle motionPowder Technology
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A quantitative assessment of the effect of distributor type on particle circulation

1997

Abstract Garncarek's quantitative index of inhomogeneity has been used to compare the effect of distributor type on the degree of uniformity of solids mixing in a gas-fluidized bed assessed by following a tracer particle using the technique of Positron Emission Particle Tracking. The bed was a sand of 475 μm diameter fluidized at 2 U mf and contained within a column of 150 mm diameter. A porous and perforated plate distributor are compared. The index shows that tracer locations are generally more homogeneously distributed throughout the vertical section of the bed with the porous plate distributor. Behaviour varies with height and horizontal sections of the bed show that there is little dif…

Cross section (physics)ChemistryGeneral Chemical EngineeringBubbleMixing (process engineering)DistributorParticleMineralogyMechanicsFluidizationPorosityMagnetosphere particle motionPowder Technology
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Single particle motion in a Penning trap: description in the classical canonical formalism

1992

This paper aims at the development of methods for the calculation of the characteristic frequencies of a Penning trap, taking into account deviations of the actual geometry from the ideal one, anharmonicities of the electric potential, misalignments and inhomogeneities of the magnetic field, additional time dependent electromagnetic fields, and so on. The paper starts by describing the motion of a single charged particle in an ideal hyperbolic Penning trap using the formalism of classical hamiltonian mechanics. The usefulness of rotating coordinates is pointed out, and the importance of conservation of canonical angular momentum is stressed. After transformation to action-angle variables th…

Electromagnetic fieldPhysicsHamiltonian mechanicsAngular momentumCondensed Matter PhysicsPenning trapAtomic and Molecular Physics and OpticsCharged particleMagnetic fieldsymbols.namesakeClassical mechanicssymbolsPhysics::Atomic PhysicsHamiltonian (quantum mechanics)Mathematical PhysicsMagnetosphere particle motionPhysica Scripta
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From equilibrium to steady state: The transient dynamics of colloidal liquids under shear

2008

We investigate stresses and particle motion during the start up of flow in a colloidal dispersion close to arrest into a glassy state. A combination of molecular dynamics simulation, mode coupling theory and confocal microscopy experiment is used to investigate the origins of the widely observed stress overshoot and (previously not reported) super-diffusive motion in the transient dynamics. A link between the macro-rheological stress versus strain curves and the microscopic particle motion is established. Negative correlations in the transient auto-correlation function of the potential stresses are found responsible for both phenomena, and arise even for homogeneous flows and almost Gaussia…

Materials scienceGaussianFOS: Physical sciencesCondensed Matter - Soft Condensed Matterconfocal microscopyMolecular dynamicssymbols.namesakeColloidddc:530General Materials ScienceColloids Glasses Shear Dynamics TransientMagnetosphere particle motionglass forming liquids under shearmode coupling serieDisordered Systems and Neural Networks (cond-mat.dis-nn)MechanicsCondensed Matter - Disordered Systems and Neural NetworksCondensed Matter PhysicsStart upmolecular dynamicsCondensed Matter::Soft Condensed MatterShear (geology)HomogeneousMode couplingsymbolsSoft Condensed Matter (cond-mat.soft)
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Colloidal crystallization in the quasi-two-dimensional induced by electrolyte gradients.

2012

We investigated driven crystal formation events in thin layers of sedimented colloidal particles under low salt conditions. Using optical microscopy, we observe particles in a thermodynamically stable colloidal fluid to move radially converging towards cation exchange resin fragments acting as seed particles. When the local particle concentration has become sufficiently large, subsequently crystallization occurs. Brownian dynamics simulations of a 2D system of purely repulsive point-like particles exposed to an attractive potential, yield strikingly similar scenarios, and kinetics of accumulation and micro-structure formation. This offers the possibility of flexibly designing and manufactur…

Materials scienceThin layersGeneral Physics and AstronomyElectrolyteColloidal crystallaw.inventionCondensed Matter::Soft Condensed MatterColloidCrystallographylawChemical physicsBrownian dynamicsParticlePhysical and Theoretical ChemistryCrystallizationMagnetosphere particle motionThe Journal of chemical physics
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NMR Studies of Single-File Diffusion in Unidimensional Channel Zeolites

1996

Single-file diffusion is the restricted propagation of particles that cannot pass each other. The occurrence of this phenomenon should be reflected by a change in the time dependence of the mean particle displacement in comparison with ordinary diffusion. Although this process is considered to be the rate-controlling mechanism in a large variety of processes, so far no direct evidence of this phenomenon has been provided. Diffusion measurements made with pulsed field gradient nuclear magnetic resonance (NMR) in unidimensional pore systems (zeolites AlPO4-5 and Theta-1) reflect the expected time dependence of single-file diffusion.

MultidisciplinaryChemical physicsChemistryScientific methodMass transferAnalytical chemistryParticle displacementCrystalliteDiffusion (business)PorosityPulsed field gradientMagnetosphere particle motionScience
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Principles of Ion Traps

2008

Three-dimensional confinement of charged particles requires a potential energy minimum at some point in space in order that the corresponding force is directed toward that point in all three dimensions. In general, the dependence of the magnitude of this force on the coordinates can have an arbitrary form; however, it is convenient to have a binding force that is harmonic, since this simplifies the analytical description of the particle motion. Thus, we assume

PhysicsClassical mechanicsMagnitude (mathematics)Point (geometry)Harmonic (mathematics)Space (mathematics)Potential energyCharged particleMagnetosphere particle motionIon
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Unidirectional Magnon-Driven Domain Wall Motion Due to the Interfacial Dzyaloshinskii-Moriya Interaction

2018

We demonstrate a unidirectional motion of a quasiparticle without an explicit symmetry breaking along the space-time coordinate of the particle motion. This counterintuitive behavior originates from a combined action of two intrinsic asymmetries in the other two directions. We realize this idea with the magnon-driven motion of a magnetic domain wall in thin films with interfacial asymmetry. Contrary to previous studies, the domain wall moves along the same direction regardless of the magnon-flow direction. Our general symmetry analysis and numerical simulation reveal that the odd order contributions from the interfacial asymmetry is unidirectional, which is dominant over bidirectional contr…

PhysicsCondensed Matter - Materials ScienceMagnetic domainCondensed Matter - Mesoscale and Nanoscale Physicsmedia_common.quotation_subjectMagnonGeneral Physics and AstronomyMaterials Science (cond-mat.mtrl-sci)FOS: Physical sciencesPhysik (inkl. Astronomie)01 natural sciencesAsymmetrySymmetry (physics)Explicit symmetry breakingDomain wall (string theory)Classical mechanics0103 physical sciencesMesoscale and Nanoscale Physics (cond-mat.mes-hall)Quasiparticle010306 general physicsMagnetosphere particle motionmedia_common
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Statistical analysis of the influence of forces on particles in EM driven recirculated turbulent flows

2011

The present paper contains an analysis of the statistical distribution of forces affecting non-conducting particles dispersed in an EM induced recirculated flow in induction furnaces. The simulation is conducted adopting the LES-based Euler-Lagrange approach in the limit of dilute conditions (one-way coupling). It is done by means of a development of OpenFOAM software code. The used Lagrange equation for particle tracking includes drag, EM, buoyancy, lift, acceleration and added mass forces. The relevant approximations for the forces are chosen on the basis of the statistical analysis of the non-dimensional parameters (particle Reynolds number, shear stress and acceleration parameter). The …

PhysicsHistoryBuoyancyTurbulenceReynolds numberMechanicsengineering.materialHomogenization (chemistry)Computer Science ApplicationsEducationPhysics::Fluid Dynamicssymbols.namesakeDragShear stressengineeringsymbolsStatistical physicsMagnetosphere particle motionAdded massJournal of Physics: Conference Series
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Three-dimensional dynamics of a particle with a finite energy of magnetic anisotropy in a rotating magnetic field.

2013

A model of a single ferromagnetic particle with a finite coupling energy of the magnetic moment with the body of the particle is formulated, and regimes of its motion in a rotating magnetic field are investigated. Regimes are possible that are synchronous and asynchronous with the field. In a synchronous regime the easy axis of the particle is in the plane of the rotating magnetic field at low frequencies (a planar regime) and on the cone at high frequencies (a precession regime). The stability of these regimes is investigated, and it is shown that the precession regime is stable for field strengths below the critical value. In a particular range of field strength value, irreversible jumps …

PhysicsRotating magnetic fieldMagnetic anisotropyNuclear magnetic resonanceCondensed matter physicsMagnetic energyDemagnetizing fieldField strengthMagnetic pressureMagnetic dipoleMagnetosphere particle motionPhysical review. E, Statistical, nonlinear, and soft matter physics
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