Search results for "Fluid dynamic"

showing 10 items of 1034 documents

Microwave heating of water in a rectangular waveguide: Validating EOF-Library against COMSOL multiphysics and existing numerical studies

2019

The purpose of this work is two-fold: first, we successfully validate our open-source tool EOF-Library, which efficiently couples Elmer FEM and OpenFOAM, against COMSOL Multiphysics, a commercial simulation package; second, we inform about significant discrepancies between our results and the experimental and simulation data found in a series of research papers. We reproduce the previously published numerical simulations wherein microwaves are supplied to a water domain through a rectangular waveguide, inducing convective flow. This is a conjugate problem with weakly coupled electromagnetics, heat transfer and fluid dynamics. It involves effects such as permittivity dependence on temperatur…

Fluid Flow and Transfer ProcessesElectromagneticsBuoyancyMaterials scienceMarangoni effect020209 energyMultiphysics02 engineering and technologyMechanicsengineering.material01 natural sciencesFinite element method010406 physical chemistry0104 chemical sciencesPhysics::Fluid Dynamicslcsh:TA1-2040Heat transfer0202 electrical engineering electronic engineering information engineeringFluid dynamicsengineeringlcsh:Engineering (General). Civil engineering (General)Engineering (miscellaneous)MicrowaveCase Studies in Thermal Engineering
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MHT-X: Offline Multiple Hypothesis Tracking with Algorithm X

2021

An efficient and versatile implementation of offline multiple hypothesis tracking with Algorithm X for optimal association search was developed using Python. The code is intended for scientific applications that do not require online processing. Directed graph framework is used and multiple scans with progressively increasing time window width are used for edge construction for maximum likelihood trajectories. The current version of the code was developed for applications in multiphase hydrodynamics, e.g. bubble and particle tracking, and is capable of resolving object motion, merges and splits. Feasible object associations and trajectory graph edge likelihoods are determined using weak mas…

Fluid Flow and Transfer ProcessesFOS: Computer and information sciencesbubble dynamicsComputer Vision and Pattern Recognition (cs.CV)neutron imagingComputational MechanicsComputer Science - Computer Vision and Pattern RecognitionFluid Dynamics (physics.flu-dyn)General Physics and AstronomyFOS: Physical sciencesPhysics - Fluid DynamicsAlgorithm Ximage processingtwo-phase flowMechanics of Materialsliquid metalX-ray radiography
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Determination of the Soret coefficient of magnetic particles in a ferrofluid from the steady and unsteady part of the separation curve

2004

Experiments on the particle separation in a vertical thermodiffusion column are used to investigate the separation (Soret effect) in ferrofluids. The use of a two-sectional column with internal walls of low thermal capacity allows analyzing the initial part of the unsteady separation curves as well as the steady state regime. The Soret coefficient calculated from the measurements of the separation dynamics agrees well with the one found from the steady separation limit reached in long-time experiments especially if the solutal buoyancy is low.

Fluid Flow and Transfer ProcessesFerrofluidSteady stateBuoyancyMaterials scienceMechanical EngineeringSeparation (aeronautics)Thermodynamicsengineering.materialCondensed Matter PhysicsHeat capacityThermophoresisPhysics::Fluid DynamicsParticle separationengineeringMagnetic nanoparticlesInternational Journal of Heat and Mass Transfer
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Investigation of flow and heat transfer in corrugated passages—II. Numerical simulations

1996

An experimental and numerical study of flow and heat transfer was conducted for a crossed-corrugated geometry, representative of compact heat exchangers under transitional and weakly turbulent conditions. Three-dimensional numerical predictions were obtained by a finite volume method using a variety of approaches ranging from laminar flow assumptions to standard and low-Reynolds number k-e turbulence models, direct simulation, and large-eddy simulation. In this paper, the various computational approaches are presented and their relative performance is discussed for various geometries and Reynolds numbers; results are compared with experimental measurements and literature data. Detailed expe…

Fluid Flow and Transfer ProcessesFinite volume methodMaterials scienceTurbulenceMechanical EngineeringThermodynamicsReynolds numberRangingLaminar flowMechanicsCondensed Matter PhysicsPhysics::Fluid Dynamicssymbols.namesakeFlow (mathematics)Heat transferHeat exchangersymbolsInternational Journal of Heat and Mass Transfer
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Velocity measurements in the liquid metal flow driven by a two-phase inductor

2012

We present the results of velocity measurements obtained by ultrasonic Doppler velocimetry and local potential probes in the flow of GaInSn eutectic melt driven by a two-phase inductor in a cylindrical container. This type of flow is expected in a recent modification to the floating zone technique for the growth of small-diameter single intermetallic compound crystals. We show that the flow structure can be changed from the typical two toroidal vortices to a single vortex by increasing the phase shift between the currents in the two coils from 0 to 90 degrees. The latter configuration is thought to be favourable for the growth of single crystals. The flow is also computed numerically and a …

Fluid Flow and Transfer ProcessesLiquid metalMaterials scienceFlow (psychology)Computational MechanicsPhase (waves)Induction heaterFluid Dynamics (physics.flu-dyn)General Physics and AstronomyFOS: Physical sciencesMechanicsPhysics - Fluid DynamicsVelocimetryVortex ringVortexPhysics::Fluid DynamicsMechanics of MaterialsEutectic system
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Phase boundary dynamics of bubble flow in a thick liquid metal layer under an applied magnetic field

2020

Dynamic neutron radiography is used to observe the effect of a transverse magnetic field on argon bubbles rising through a thick layer of liquid gallium without interactions with the container walls.

Fluid Flow and Transfer ProcessesLiquid metalPhase boundaryMaterials scienceArgonCondensed matter physicsPhysics::Instrumentation and DetectorsNeutron imagingDynamics (mechanics)Computational Mechanicschemistry.chemical_elementMagnetic fieldPhysics::Fluid DynamicschemistryModeling and SimulationBubble flowNuclear ExperimentLayer (electronics)Physical Review Fluids
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Natural convection heat transfer in a partially—or completely—partitioned vertical rectangular enclosure

1991

Abstract The effect of symmetric partitions protruding centrally from the end walls of a rectangular vertical enclosure on heat transfer rates is investigated numerically. The enclosure has opposite isothermal walls at different temperatures. The Rayleigh number is varied from 10 4 to 10 7 and the aspect ratio from 0.5 to 10. The thickness of the partitions is fixed and equal to one tenth of the width of the enclosure. Their non-dimensional length ( L / H ) is varied from 0 (non-partitioned enclosure) to 0.5 (two separate enclosures). The effect of different thermal boundary conditions at the end walls and at the partitions is included in the investigation.

Fluid Flow and Transfer ProcessesMaterials scienceAspect ratioMechanical EngineeringEnclosureThermal boundary conditionsThermodynamicsNatural convection heat transferMechanicsRayleigh numberCondensed Matter PhysicsIsothermal processPhysics::Fluid DynamicsHeat transferPhysics::Chemical PhysicsInternational Journal of Heat and Mass Transfer
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Continuous-Flow Synthesis of Ni(0) Nanoparticles Using a Cone Channel Nozzle or a Micro Coaxial-Injection Mixer

2015

To synthesize nickel(0) nanoparticles by wet chemical reduction using hydrazine with an average size distribution below 100 nm, two different reactor concepts were developed. With a cone channel nozzle, the reactant solutions were sprayed into a batch for further processing and reduction at elevated temperatures. Another concept uses a micro-coaxial injection mixer connected to a heated tube to establish a fully continuously operating reactor. To shorten the time for reduction of the nickel, salt temperatures up to 180 °C are applied. To avoid uncontrolled residence time, the whole system was pressurized up to 80 bar. Approximately 80 L reactant solution, i.e., 1 kg nickel(0) nanoparticles,…

Fluid Flow and Transfer ProcessesMaterials scienceOrganic ChemistryHydrazineNozzleAnalytical chemistryNanoparticleNanochemistrychemistry.chemical_elementResidence time (fluid dynamics)chemistry.chemical_compoundNickelchemistryChemical engineeringChemistry (miscellaneous)Tube (fluid conveyance)CoaxialJournal of Flow Chemistry
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Effects of irregular two-dimensional and three-dimensional surface roughness in turbulent channel flows

2012

Abstract Wall-resolved Large Eddy Simulation of fully developed turbulent channel flows over two different rough surfaces is performed to investigate on the effects of irregular 2D and 3D roughness on the turbulence. The two geometries are obtained through the superimposition of sinusoidal functions having random amplitudes and different wave lengths. In the 2D configuration the irregular shape in the longitudinal direction is replicated in the transverse one, while in the 3D case the sinusoidal functions are generated both in streamwise and spanwise directions. Both channel walls are roughened in such a way as to obtain surfaces with statistically equivalent roughness height, but different…

Fluid Flow and Transfer ProcessesMaterials scienceTurbulencebusiness.industryMechanical EngineeringReynolds numberGeometrySurface finishReynolds stressCondensed Matter PhysicsOpen-channel flowSettore ICAR/01 - IdraulicaPhysics::Fluid DynamicsTurbulencesymbols.namesakeOpticsRoughness lengthLarge Eddy simulationSurface roughnesssymbolsRoughnebusinessLarge eddy simulation
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Turbulences of the supersonic gas flow during cold spraying and their negative effects: A DNS CFD analysis coupled with experimental observation and …

2020

Abstract This paper investigates the phenomenological flow during cold spraying through DNS CFD analysis and experimental observations. The transient DNS computation shows that the gas flow begins to be instable inside the nozzle and generates self-sustained intermittent swirls across the nozzle exit due the shearing behavior of the flow. There is alternate swirling within the separated sheared layers on top and then on bottom of the jet, at sporadic time intervals. The swirls are not strictly periodic in nature, but they recur with an irregular frequency. The temperature field exhibits analogous variation and the thermal turbulence produces a heating confinement within the end zone of the …

Fluid Flow and Transfer ProcessesMaterials sciencebusiness.industryTurbulenceMechanical EngineeringNozzle02 engineering and technologyMechanicsComputational fluid dynamicsWakeVorticityShadowgraphy021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciences010305 fluids & plasmasPlumePhysics::Fluid Dynamics[SPI]Engineering Sciences [physics]0103 physical sciencesSupersonic speed0210 nano-technologybusinessInternational Journal of Heat and Mass Transfer
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