Search results for "Fluid Dynamic"

showing 10 items of 1034 documents

Influence of the Electromagnetic, G-Jitter or Thermocapillary Forces on the Stability of the Stationary Buoyancy Convection

1992

Microgravity conditions seem to be very useful for crystal growth processes. Reduced gravitational force strongly weakens the buoyancy convection, so the convective oscillations in the melt become impossible [1]. This is the main reason of numerous attempts to obtain monocrystal materials with homogeneous internal structure in microgravity. On the other hand for non-isothermal fluid in microgravity conditions other driving forces become more significant than on the Earth. The main of them are thermocapillarity and g-jitter. The thermocapillary forces exist on the non-uniformly heated free liquid surfaces and cause motion of the fluid. The g-jitter appears in space unavoidably because of the…

ConvectionBuoyancyNatural convectionCapillary actionMarangoni numberRayleigh numberengineering.materialMagnetic fieldPhysics::Fluid DynamicsGravitationClassical mechanicsPhysics::Space PhysicsengineeringMathematics
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Instability of the melt flow in VGF growth with a traveling magnetic field

2009

The linear instability of a thermally stratified melt flow in the VGF configuration driven by a traveling magnetic field (TMF) is considered numerically and experimentally. The dependency of the instability threshold on the governing parameters is found for several cuts through the parameter space covering a wide range of possible applications. In a first approximation the linear instability occurs when the dimensionless TMF forcing parameter reaches the magnitude of the Grashof number. This is particularly true in a medium-sized crucible where the first instability is axisymmetric and sub-critical. As the Grashof number increases the flow develops self-similar boundary layers and the insta…

ConvectionChemistrybusiness.industryFlow (psychology)Grashof numberMechanicsCondensed Matter PhysicsInstabilityMagnetic fieldInorganic ChemistryPhysics::Fluid DynamicsBoundary layerTemperature gradientOpticsMeridional flowMaterials Chemistrybusiness
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Time-dependent simulation of Czochralski silicon crystal growth

1997

We have developed a detailed mathematical model and numerical simulation tools based on the streamline upwind/Petrov-Galerkin (SUPG) finite element formulation for the Czochralski silicon crystal growth. In this paper we consider the mathematical modeling and numerical simulation of the time-dependent melt flow and temperature field in a rotationally symmetric crystal growth environment. Heat inside the Czochralski furnace is transferred by conduction, convection and radiation, Radiating surfaces are assumed to be opaque, diffuse and gray. Hence the radiative heat exchange can be modeled with a non-local boundary condition on the radiating part of the surface. The position of the crystal-me…

ConvectionComputer simulationChemistryLaminar flowMechanicsCondensed Matter PhysicsThermal conductionFinite element methodPhysics::Fluid DynamicsInorganic ChemistryMonocrystalline siliconClassical mechanicsHeat transferMaterials ChemistryBoundary value problemJournal of Crystal Growth
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Numerical investigation of thermomagnetic convection in a heated cylinder under the magnetic field of a solenoid

2011

The main objective of this paper is the numerical investigation of the process of thermomagnetic convection of a special temperature sensitive ferrofluid. The fluid is studied in a cylindrical domain, with constant temperatures on the top and bottom ends and adiabatic boundary conditions on the sidewalls. The thermomagnetic convection is generated by a non-uniform constant magnetic field of a solenoid, which is placed in a hollow area inside the domain. It has been found that the efficiency of convective heat transfer in such a set-up can be increased up to sevenfold by magnetic field within the studied range of parameters.

ConvectionFerrofluidConvective heat transferChemistryThermodynamicsSolenoidThermomagnetic convectionMechanicsCondensed Matter PhysicsMagnetic fieldPhysics::Fluid DynamicsHeat transferGeneral Materials ScienceAdiabatic processJournal of Physics: Condensed Matter
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Magnetic particle mixing with magnetic micro-convection for microfluidics

2015

International audience; In this paper we discuss the magnetic micro-convection phenomenon as a tool for mixing enhancement in microfluidics systems in cases when one of the mis-cible fluids is a magnetic particle colloid. A system of a water-based magnetic fluid and water is investigated experimentally under homogeneous magnetic field in a Hele-Shaw cell. Subsequent image analysis both qualitatively and quan-titatively reveals the high enhancement of mixing efficiency provided by this method. The mixing efficiency dependence on the magnetic field and the phys-ical limits is discussed. A suitable model for a continuous-flow microfluidics setup for mixing with magnetic micro-convection is als…

ConvectionFerrofluidMaterials scienceMagnetic FluidMicrofluidicsMicrofluidicsNanotechnology02 engineering and technologyMagnetic particle inspectionMagnetic micro-convection01 natural scienceslaw.inventionPhysics::Fluid DynamicsDiffusionMixinglaw[PHYS.PHYS.PHYS-PLASM-PH]Physics [physics]/Physics [physics]/Plasma Physics [physics.plasm-ph]Diffusion (business)Mixing (physics)010401 analytical chemistryMechanicsLab-on-a-chip021001 nanoscience & nanotechnologyCondensed Matter Physics0104 chemical sciencesElectronic Optical and Magnetic MaterialsMagnetic fieldFerrofluid0210 nano-technology
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Gravity effects on mixing with magnetic micro-convection in microfluidics.

2018

Mixing remains an important problem for development of successful microfluidic and lab-on-a-chip devices, where simple and predictable systems are particularly interesting. One is magnetic micro-convection, an instability happening on the interface of miscible magnetic and non-magnetic fluids in a Hele-Shaw cell under applied field. Previous work proved that Brinkman model quantitatively explains the experiments. However, a gravity caused convective motion complicated the tests. Here we first improve the experimental system to exclude the gravitational convective motion. Afterwards, we observe and quantify how gravity and laminar flow play an important role in stabilizing the perturbations …

ConvectionGravity (chemistry)Field (physics)BiophysicsFOS: Physical sciences02 engineering and technologyCondensed Matter - Soft Condensed Matter01 natural sciencesInstability010305 fluids & plasmasGravitationPhysics::Fluid Dynamics0103 physical sciencesGeneral Materials ScienceCritical fieldMixing (physics)PhysicsFluid Dynamics (physics.flu-dyn)Laminar flowSurfaces and InterfacesGeneral ChemistryMechanicsPhysics - Fluid Dynamics021001 nanoscience & nanotechnologySoft Condensed Matter (cond-mat.soft)0210 nano-technologyBiotechnologyThe European physical journal. E, Soft matter
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Controlling melt convection—an innovation potential for concerted microstructure evolution of Nd-Fe-B alloys

2005

The solidification process and the resulting microstructure of Nd-Fe-B alloys in consideration of melt convection has been investigated experimentally with a specially designed forced crucible rotation technique. Samples were subjected to well-defined forced rotation and vibration, respectively, during induction heating and solidification. A concerted microstructure evolution is possible by enhancement or suppression of the melt convection. As a result, the microstructure pattern, mainly the volume fraction of the soft magnetic a-Fe phase, vary strongly with the strength of the internal flow motion. A distinct reduction of the a-Fe volume fraction in samples with strong melt rotation was ob…

ConvectionInduction heatingMaterials scienceCondensed matter physicsInternal flowMechanical EngineeringMetallurgyCrucibleCondensed Matter PhysicsMicrostructureMagnetic fieldPhysics::Fluid DynamicsMechanics of MaterialsVolume fractionGeneral Materials ScienceMelt flow indexMaterials Science and Engineering: A
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Influence of growth parameters and melt convection on the solid-liquid interface during RF-floating zone crystal growth of intermetallic compounds

2001

Abstract The influence of growth parameters and melt convection on the solid–liquid interface of the intermetallic compound Ni3Si grown by the RF-floating zone technique was investigated experimentally as well as numerically. Numerical simulations showed that the heat transfer is strongly influenced by the electromagnetically driven and Marangoni convections whereas both the buoyancy and feed rotation have a negligible effect. It was found experimentally that the inductor design, the rod diameter and the length of the molten zone influence the solid–liquid interface shape significantly. The electromagnetically driven convection increases dramatically with increasing zone length due to the r…

ConvectionMarangoni effectBuoyancyChemistryIntermetallicCrystal growthNumerical simulationengineering.materialCondensed Matter PhysicsGrowth parametersMagnetic fieldFloating zone techniqueInorganic ChemistryPhysics::Fluid DynamicsCrystallographyHeat transferMaterials ChemistryengineeringCrystalliteComposite material
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Heat and mass transfer phenomena in magnetic fluids

2007

In this article the influence of a magnetic field on heat and mass transport phenomena in magnetic fluids (ferrofluids) will be discussed. The first section is dealing with a magnetically driven convection, the so called thermomagnetic convection while in the second section the influence of a temperature gradient on the mass transport, the Soret effect in ferrofluids, is reviewed. (© 2007 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim)

ConvectionMass transportFerrofluidMaterials scienceCondensed matter physicsApplied MathematicsGeneral Physics and AstronomyThermomagnetic convectionThermophoresisMagnetic fieldPhysics::Fluid DynamicsTemperature gradientMass transferGeneral Materials ScienceNonlinear Sciences::Pattern Formation and SolitonsGAMM-Mitteilungen
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A three-dimensional study of the onset of convection in a horizontal, rectangular porous channel heated from below

2012

Author's version of an article published in the journal: International Journal of Thermal Sciences. Also available from the publisher at: http://dx.doi.org/10.1016/j.ijthermalsci.2011.12.012 The onset of convection is studied in a rectangular channel filled with a fluid saturated porous medium, bounded above and below by impermeable isothermal walls at unequal temperatures and laterally by partially conducting walls. A three-dimensional linear stability analysis is carried out under the assumption of an infinite longitudinal channel length. Then, this assumption is relaxed in order to determine the threshold length for the three-dimensional convection to be the preferred mode at onset. Sens…

ConvectionMaterials scienceBiot number Darcy-Bénard problem lateral confinement linear stability method of weighted residuals rectangular channelAspect ratioBiot numberLINEAR STABILITYBIOT NUMBERGeneral EngineeringThermodynamicsMechanicsCondensed Matter PhysicsInstabilityVDP::Mathematics and natural science: 400::Mathematics: 410Physics::Fluid DynamicsTransverse planeDARCY-BÉNARD PROBLEMHeat transferMETHOD OF WEIGHTED RESIDUALSRECTANGULAR CHANNELLongitudinal waveLinear stability
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