Search results for "Fluid flow"

showing 10 items of 405 documents

Local Effects of Longitudinal Heat Conduction in Plate Heat Exchangers

2007

Abstract In a plate heat exchanger, heat transfer from the hot to the cold fluid is a multi-dimensional conjugate problem, in which longitudinal heat conduction (LHC) along the dividing walls often plays some role and can not be neglected. Large-scale , or end-to-end, LHC is always detrimental to the exchanger’s effectiveness. On the contrary, if significant non-uniformities exist in the distribution of either convective heat transfer coefficient, small-scale , or local, LHC may actually enhance the exchanger’s performance by improving the thermal coupling between high heat transfer spots located on the opposite sides of the dividing wall.

Fluid Flow and Transfer ProcessesMaterials scienceConvective heat transferMechanical Engineeringlongitudinal heat conductionPlate heat exchangerThermodynamicsconjugate heat transferHeat transfer coefficientMechanicsHeat sinkCondensed Matter Physicsplate heat exchangerHeat transferHeat spreaderMicro heat exchangerPlate fin heat exchangerSettore ING-IND/19 - Impianti Nucleari
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A Photographic study of subcooled flow boiling burnout at high heat flux and velocity

2007

Abstract The present paper reports the results of a visualization study of the burnout in subcooled flow boiling of water, with square cross section annular geometry (formed by a central heater rod contained in a duct characterized by a square cross section). The coolant velocity is in the range 3–10 m/s. High speed movies of flow pattern in subcooled flow boiling of water from the onset of nucleate boiling up to physical burnout of the heater are recorded. From video images (single frames taken with a stroboscope light and an exposure time of 1 μs), the following general behaviour of vapour bubbles was observed: when the rate of bubble generation is increasing, with bubbles growing in the …

Fluid Flow and Transfer ProcessesMaterials scienceCritical heat fluxMechanical EngineeringBubbleThermodynamicsMechanicsBlanketCondensed Matter PhysicsCoolantSubcoolingSuperheatingDuct (flow)Nucleate boilingInternational Journal of Heat and Mass Transfer
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Evaluation of vapor mass transfer in various membrane distillation configurations: an experimental study

2011

Vapor mass transfer phenomena in four different membrane distillation (MD) configurations were examined through a self-built laboratory scale experimen- tal apparatus: Air Gap MD, Sweeping Gas MD, Vacuum Sweeping Gas MD and Vacuum MD. Vapor fluxes were measured and compared with those predicted by various models, showing that MD performance under usual processing conditions is severely controlled by the permeate side resistance to mass transfer.

Fluid Flow and Transfer ProcessesMaterials scienceMass transfermass transferThermodynamicsmembrane distillationPermeationLaboratory scalehydrophobic membranesCondensed Matter PhysicsAir gap (plumbing)Membrane distillation
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The Influence of the Electric Field on the Development of the Swirling Flame Velocity Field and Combustion Characteristics

2008

Fluid Flow and Transfer ProcessesMaterials scienceMechanical EngineeringElectric fieldVector fieldDevelopment (differential geometry)MechanicsCondensed Matter PhysicsCombustionHeat Transfer Research
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Experimental research of surfaced nanoparticle thermal transport in a porous medium

2018

Abstract Experimental research on thermally induced nanocolloid transport in a porous environment is presented. Addition of excess surfactant to a colloid with dispersed phase made of surfaced nanoparticles results in a decrease of effective Soret coefficient in a porous environment. It is shown that with sufficient amounts of surfactant added, this effect extends to a reversal of nanoparticle thermophoretic transport direction, and that the effect shows a tendency of saturation. A mechanism of thermal transport that involves slip velocity of surfactant molecules appearing near pore walls is evaluated as a possible cause of the decrease of Soret coefficient. Effects of temperature on partic…

Fluid Flow and Transfer ProcessesMaterials scienceMechanical Engineeringtechnology industry and agricultureNanoparticle02 engineering and technologyequipment and supplies021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesThermophoresis010305 fluids & plasmasColloidPulmonary surfactantChemical engineering0103 physical sciencesMolecule0210 nano-technologyPorous mediumPorositySaturation (magnetic)International 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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Effect of laser radiation upon heat and mass transfer in two-component elastic semitransparent layer

2004

Abstract In present paper the effect of the correlation between spectral radiative characteristics of different lasers and absorptive characteristics of laser irradiated two-component elastic semitransparent material upon coupled thermal, diffusive and elastic processes in the layer is examined. Irradiated material is supposed to consist of elastic matrix and gaseous admixture. Investigations are carried out within the model applied early to the study of mentioned coupled processes in the layer subjected to thermal infrared radiation. Calculations were carried out for four different infrared lasers. Peculiarities of heat and admixture mass transfer caused by laser irradiation are establishe…

Fluid Flow and Transfer ProcessesMaterials sciencePhysics::Instrumentation and DetectorsInfraredbusiness.industryMechanical EngineeringRadiationCondensed Matter PhysicsLaserMolecular physicslaw.inventionOpticslawMass transferThermalRadiative transferIrradiationbusinessLayer (electronics)International Journal of Heat and Mass Transfer
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Optofluidic microconvection with magnetic nanoparticles: Novel interaction of thermal diffusion and magnetic field

2021

Abstract Light-matter interactions are exploited in many applications, whereas superparamagnetic nanoparticles allow to introduce magnetic field control in diverse fluid environments. We study the structure of laser-induced thermal lens in thin layers of ferromagnetic colloid and predict significant magnetoconvective motion around the beam spot. It was found that localized heating depletes/accumulates magnetic nanoparticles in the beam-spot by thermal diffusion and collective magnetic interactions of nanoparticles produce strong microconvective currents. This mode of mass transport can be controlled by magnetic field. We expect the novel magnetosolutal microconvective coupling, which we des…

Fluid Flow and Transfer ProcessesMaterials scienceThin layersMechanical EngineeringMicrofluidicsNanoparticle02 engineering and technology021001 nanoscience & nanotechnologyCondensed Matter PhysicsThermal diffusivity01 natural sciences010305 fluids & plasmasMagnetic fieldCoupling (physics)FerromagnetismChemical physics0103 physical sciencesMagnetic nanoparticles0210 nano-technologyInternational Journal of Heat and Mass Transfer
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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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Thermal and Hydrodynamic Analysis of the Melting Process in the Cold Crucible Using 3D Modeling

2008

Fluid Flow and Transfer ProcessesMaterials sciencebusiness.industryMechanical EngineeringScientific methodMetallurgyThermalCrucibleThermodynamicsCondensed Matter Physics3D modelingbusinessHeat Transfer Research
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