Search results for "heat flux"

showing 10 items of 133 documents

Physical modelling of Czochralski crystal growth in horizontal magnetic field

2017

Abstract This study addresses experimentally the heat transfer, the temperature azimuthal non-uniformity and the onset of oscillations in a low temperature physical model of a medium-sized Czochralski crystal growth process with a strong horizontal magnetic field (HMF). It is observed that under certain conditions the integral heat flux may decrease with increasing magnetic field strength at the same time as the flow velocity increases. The azimuthal non-uniformity of the temperature field in the melt near the crystal model rim is only little influenced by its rotation rate outside of a narrow range where the centrifugal force balances the buoyant one. The flow oscillation onset has been ob…

Centrifugal forceCondensed matter physicsField (physics)OscillationChemistry02 engineering and technology021001 nanoscience & nanotechnologyCondensed Matter PhysicsRotation01 natural sciences010305 fluids & plasmasMagnetic fieldInorganic ChemistryClassical mechanicsFlow velocityHeat flux0103 physical sciencesHeat transferMaterials Chemistry0210 nano-technologyJournal of Crystal Growth
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Thermomechanical effects in the flow of a fluid in porous media

2002

This paper deals with analysis, by methods of extended thermodynamics, of the thermomechanical effects which arise in the flow of a weakly viscous fluid in a porous medium. Under the hypothesis that the fluid fills all the interstices among the powder and that the size of the powder grains and of the interstices is much lower than a suitable characteristic length, linearized field equations are written, which include, in a natural way, terms which take into account the Dufour, Soret, and virtual mass effects. As a limiting case when the evolution time of the heat flux goes to infinite and no entropy flux is carried, the flow of liquid helium II in a porous medium is obtained.

Characteristic lengthThermodynamicsViscous liquidComputer Science ApplicationsPhysics::Fluid DynamicsHeat fluxModeling and SimulationMass transferModelling and SimulationHeat transferFluid dynamicsBoundary value problemPorous mediumMathematicsMathematical and Computer Modelling
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Peltier’s and Thomson’s coefficients of thermoelectric phenomena in the observable formulation

2011

Four transport coefficients characterize the thermoelectric properties of materials. Three of them are widely measured and studied. But the number of references on the Peltier coefficient are very limited. This unequal result is a consequence of the Onsager reciprocal relation (ORR). A review on the preciseness and accuracy of Peltier coefficient measurements has been developed in this paper. Thus we can appreciate a low level in the experimental confirmation for the ORR. In order to describe the thermoelectric processes in an advantageous way, the observable formulation has been used. This is characterized by the electric potential measured at the probe terminals and for the heat flux whic…

Condensed matter physicsHeat fluxChemistryThermoelectric effectEnergy balanceGeneral Materials ScienceObservableElectric potentialMechanicsCondensed Matter PhysicsMaterial propertiesConductorJournal of Physics: Condensed Matter
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Influence of Skin Depth on Convective Heat Transfer in Induction Heating

2017

International audience; We investigate convection driven by induction heating of a horizontal fluid layer using direct numerical simulations (DNS). This problem is of particular interest in the context of nuclear severe accident mastering. In a real severe accident, the molten core is subjected to homogeneous internal sources resulting from nuclear disintegrations. This situation is mimicked in the laboratory using induction heating as the internal source. In induction heating, however, heat sources are localized in the skin layer. Consequently, this concentration of heat may modify the flow and wall heat transfer compared to the case of homogeneous internal sources. DNS are carried out for…

ConvectionInduction heatingConvective heat transferMHDDNS020209 energyMécanique des fluidesFlow (psychology)General Physics and AstronomyThermodynamicsContext (language use)02 engineering and technology01 natural sciences010305 fluids & plasmas[CHIM.GENI]Chemical Sciences/Chemical engineering0103 physical sciences0202 electrical engineering electronic engineering information engineeringThermal convectionNumerical simulationsElectrical and Electronic EngineeringInduction heatingCritical heat fluxChemistryMechanicsCore (optical fiber)Heat transfer
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Study of a water-cooled convective divertor prototype for the DEMO fusion reactor

2000

The plasma facing components of a fusion power reactor have a large impact on the overall plant design, its performance and availability and on the cost of electricity. The present work concerns a study of feasibility for a water-cooled prototype of the convective divertor component of the DEMO fusion reactor. The study has been carried out in two steps. In the first one thermal-hydraulic and neutronic parametric analyses have been performed to find out the prototype optimized configuration. In the second step thermo-mechanical analyses have been carried out on the obtained configuration to investigate the potential and limits of the proposed prototype, with a particular reference to the ma…

ConvectionNeutron transportMaterials scienceHeat fluxCritical heat fluxDivertorNuclear engineeringNUCLEAR FUSION DEMO REACTOR DIVERTOR THERMO-MECHANICSHeat transferMechanical engineeringNuclear fusionFusion powerAIP Conference Proceedings
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Onset of convection in a vertical porous cylinder with a permeable and conducting side boundary

2015

Abstract The onset of natural convection in a vertical porous cylinder saturated by a fluid is studied. The lateral confinement of the porous cylinder is due to an external porous medium having a permeability much smaller than that of the cylinder. Thus, the vertical side boundary of the cylinder is permeable and constrained by given pressure and temperature distributions. The lower and upper plane boundaries of the cylinder are impermeable walls. The lower wall is subject to a uniform heat flux, while the upper wall has a uniform temperature. The basic motionless state displays a uniform and vertical temperature gradient oriented downward. The linear stability analysis is carried out by us…

ConvectionRayleigh–Bénard problemMaterials scienceNatural convectionGeneral EngineeringPorous mediumMechanicsCondensed Matter PhysicsPhysics::Fluid DynamicsTemperature gradientsymbols.namesakeMathieu functionClassical mechanicsHeat fluxNatural convectionDispersion relationsymbolsVertical cylinderLinear stabilityPorous mediumLinear stability
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Modeling of Melt Flow and Heat Transfer in Stationary Gas Tungsten Arc Welding with Vertical and Tilted Torches

2021

A 3D numerical simulation was conducted to study the transient development of temperature distribution in stationary gas tungsten arc welding with filler wire. Heat transfer to the filler wire and the workpiece was investigated with vertical (90°) and titled (70°) torches. Heat flux, current flux, and gas drag force were calculated from the steady-state simulation of the arc. The temperature in the filler wire was determined at three different time intervals: 0.12 s, 0.24 s, and 0.36 s. The filler wire was assumed not to deform during this short time, and was therefore simulated as solid. The temperature in the workpiece was calculated at the same intervals using heat flux, current flux, ga…

ConvectionTechnologyheat transfer to the filler wireMaterials scienceBuoyancytransient heat transfer in GTAWengineering.materialArticlelaw.inventionlawtilted torchGeneral Materials ScienceComposite materialMicroscopyQC120-168.85GTAW with filler wireMarangoni effectTorchGas tungsten arc weldingTQH201-278.5melt flow in weld poolgas tungsten arc weldingEngineering (General). Civil engineering (General)TK1-9971Volume (thermodynamics)Heat fluxDescriptive and experimental mechanicsHeat transferengineeringElectrical engineering. Electronics. Nuclear engineeringTA1-2040Materials
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A study of hydrothermal convection in saturated porous media

1993

Abstract Because of its relevance to many geological and technical problems, hydrothermal convection is investigated here mainly with the aid of numerical models by a systematic analysis of the properties of this type of convection for a range of super-critical Rayleigh numbers. Calculations were performed for two-dimensional models with constant properties in a region of aspect ratio 2. The principal results in the case of temperature fixed at the impermeable top and bottom are the following for the Nusselt number Nu, the cell aspect ratio a, and the boundary layer thickness δ: Nu ≈ 1.7 R0.5, a ≈ 1.3 R−0.4, δc ≈ 0.4 R−0.4 for 2.5 R = R f /R f ∗ and Rf and R f ∗ are the ambient and critical…

ConvectionThermodynamicsFunction (mathematics)Rayleigh numberBoundary layer thicknessNusselt numberPhysics::Fluid Dynamicssymbols.namesakeGeophysicsThermal conductivityHeat fluxsymbolsRayleigh scatteringGeologyEarth-Surface ProcessesTectonophysics
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Viscous dissipation and thermoconvective instabilities in a horizontal porous channel heated from below

2010

Accepted version of av article from the journal: International Journal of Thermal Sciences. Published version available on Science Direct: http://dx.doi.org/10.1016/j.ijthermalsci.2009.10.010 A linear stability analysis of the basic uniform flow in a horizontal porous channel with a rectangular cross section is carried out. The thermal boundary conditions at the impermeable channel walls are: uniform incoming heat flux at the bottom wall, uniform temperature at the top wall, adiabatic lateral walls. Thermoconvective instabilities are caused by the incoming heat flux at the bottom wall and by the internal viscous heating. Linear stability against transverse or longitudinal roll disturbances …

ConvectionVDP::Mathematics and natural science: 400::Mathematics: 410::Applied mathematics: 413Darcy's lawMaterials scienceLINEAR STABILITYGeneral EngineeringThermodynamicsMechanicsCondensed Matter PhysicsInstabilityVISCOUS DISSIPATIONPhysics::Fluid DynamicsHeat fluxPOROUS MEDIUMCONVECTIVE ROLLSHeat transferPotential flowVDP::Technology: 500::Materials science and engineering: 520Adiabatic processDARCY'S LAWLinear stability
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E.O.-based estimation of transpiration and crop water requirements for vineyards: a case study in southern Italy

2014

An efficient use of water for irrigation is a challenging task. From an agronomical point of view, it requires establishing the optimal amount of water to be supplied, at the correct time, based on phenological phase and water stress spatial distribution. Indeed, the knowledge of the actual water stress is essential for agronomic decisions, vineyards need to be managed to maintain a moderate water stress, thus allowing to optimize berries quality and quantity. Methods for quickly quantifying where, when and in what extent, vines begin to experience water stress are beneficial. Traditional point based methodologies, such those based on Scholander pressure chamber, even if well established ar…

Current (stream)CanopyHydrologyLeaf water potential Canopy latent heat flux Scholander bomb Two source energy balance modelingIrrigationLatent heatEnergy balanceEnvironmental scienceSpatial variabilityVegetationLeaf water potential Canopy latent heat flux Scholander bomb Two source energy balance modeling.TranspirationSPIE Proceedings
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