Search results for "Fluid dynamics"

showing 10 items of 1005 documents

Numerical model for the shear rheology of two-dimensional wet foams with deformable bubbles

2014

Shearing of two-dimensional wet foam is simulated using an introduced numerical model, and results are compared to those of experiments. This model features realistically deformable bubbles, which distinguishes it from previously used models for wet foam. The internal bubble dynamics and their contact interactions are also separated in the model, making it possible to investigate the effects of the related microscale properties of the model on the macroscale phenomena. Validity of model assumptions was proved here by agreement between the simulated and measured Herschel-Bulkley rheology, and shear-induced relaxation times. This model also suggests a relationship between the shear stress and…

Materials scienceBubbledeformable bubbles01 natural sciences010305 fluids & plasmasDiffusionPhysics::Fluid DynamicsShear rheologyRheology0103 physical sciencesShear stressPressureshear rheology010306 general physicsMicroscale chemistryMechanical PhenomenaShearing (physics)Solid particlewet foamsta114MechanicsModels TheoreticalCondensed Matter::Soft Condensed MatterStress MechanicalRheologyBubble deformationPhysical Review E
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Design of a reactor operating in supercritical water conditions using CFD simulations. Examples of synthesized nanomaterials

2011

International audience; Direct information about fluids under supercritical water conditions is unfeasible due to the engineering restrictions at high pressure and high temperature. Numerical investigations based on computational fluid dynamics (CFD) calculations are widely used in order to get extensive information on the fluid behavior, particularly to help the design of a new reactor. This paper presents the numerical investigations performed on an original supercritical water device, especially in the level of the reactor. CFD calculations allow to design and optimize the present reactor described in this study. Currently, this process produces some nanometric oxide powders in continuou…

Materials scienceCONTINUOUS HYDROTHERMAL SYNTHESISGeneral Chemical EngineeringNuclear engineeringOxideNanotechnology02 engineering and technologyComputational fluid dynamics010402 general chemistry7. Clean energy01 natural sciencesMIXERNanomaterialsCrystallinitychemistry.chemical_compoundNANOPOWDERSMETAL-OXIDE NANOPARTICLESNano-oxidesFluentPARTICLES[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringPhysical and Theoretical ChemistryHigh-resolution transmission electron microscopySupercritical waterNanomaterialsbusiness.industry[ SPI.GPROC ] Engineering Sciences [physics]/Chemical and Process Engineering021001 nanoscience & nanotechnologyCondensed Matter PhysicsCFD simulationsSupercritical fluid0104 chemical sciencesPowder synthesisNANOCRYSTALSchemistryScientific methodFluent0210 nano-technologybusiness
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Microfluidic Preparation of Liquid Crystalline Elastomer Actuators

2018

This paper focuses on the microfluidic process (and its parameters) to prepare actuating particles from liquid crystalline elastomers. The preparation usually consists in the formation of droplets containing low molar mass liquid crystals at elevated temperatures. Subsequently, these particle precursors are oriented in the flow field of the capillary and solidified by a crosslinking polymerization, which produces the final actuating particles. The optimization of the process is necessary to obtain the actuating particles and the proper variation of the process parameters (temperature and flow rate) and allows variations of size and shape (from oblate to strongly prolate morphologies) as wel…

Materials scienceCapillary actionGeneral Chemical EngineeringMicrofluidicsMicrofluidicsAucunJanus particles02 engineering and technologyElastomer01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyPhysics::Fluid DynamicsLiquid crystalGeneral Immunology and Microbiology010405 organic chemistryGeneral Neuroscience021001 nanoscience & nanotechnologyLiquid Crystals0104 chemical sciencesVolumetric flow rateCondensed Matter::Soft Condensed MatterChemistryElastomersChemical engineeringParticleArtificial muscle0210 nano-technology
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An experimental investigation of the shear behaviour of polyethylenes with different structures

1985

Rheological properties in shear flow are presented for four different polyethylene samples: a high density, a linear low density and two low density polyethylenes manufactured using different techniques. Tests have been performed with the aid of capillary types of instrument equipped with capillaries of various lengths at three different temperatures. End correction factors have been determined and true flow curves obtained. Swelling ratios for both unannealed and annealed samples have been determined as well as the shear rate and shear stress at which irregularities begin. In some cases generalized plots have been prepared and in all cases the rheological response is discussed in terms of …

Materials scienceCapillary actionPolyethyleneCondensed Matter PhysicsPhysics::Fluid DynamicsCondensed Matter::Soft Condensed MatterShear ratechemistry.chemical_compoundRheologychemistryPolymer chemistrymedicineShear stressGeneral Materials ScienceEnd correctionSwellingmedicine.symptomComposite materialShear flowRheologica Acta
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Simulation of liquid penetration in paper

2006

Capillary penetration of a wetting liquid in a microtomographic image of paper board, whose linear dimension was close to the average length of wood fibers, was simulated by the lattice-Boltzmann method. In spite of the size of the system not being large with respect to the size of structural inhomogeneities in the sample, for unidirectional penetration the simulated behavior was described well by that of the Lucas-Washburn equation, while for radial penetration a radial capillary equation described the behavior. In both cases the average penetration depth of the liquid front as a function of time followed a power law over many orders of magnitude. Capillary penetration of small droplets of…

Materials scienceCapillary actionbusiness.industryPenetration (firestop)MechanicsGranular materialPower lawPhysics::Fluid DynamicsOpticsLiquid penetrationCondensed Matter::SuperconductivityWettingPenetration depthPorous mediumbusinessPhysical review E
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Turbulence structures over irregular rough surfaces

2010

Turbulent flow in a channel with irregular two-dimensional rough surfaces is analysed through wall-resolving large eddy simulation (LES). Both walls of the channel are roughened through the superimposition of sinusoidal functions having random amplitude and four different wavelengths. The downward shift of the velocity profile in the log region due to the roughness, known as roughness function, is well captured in the simulations. The spanwise and wall-normal turbulence intensities are found to increase with the roughness height, while the streamwise component decreases. The analysis of the Reynolds stress anisotropy tensor highlights a tendency towards isotropisation, confirmed by the vort…

Materials scienceComputational MechanicsGeneral Physics and Astronomyturbulence; irregular rough wall; LESSurface finishReynolds stresschannel flowSettore ICAR/01 - IdraulicaPhysics::Fluid Dynamicsirregular rough wallOpticsirregular roughneAnisotropyturbulence structureTurbulencebusiness.industryturbulenceMechanicsVorticityCondensed Matter PhysicsOpen-channel flowRoughness lengthMechanics of MaterialsLESbusinessLarge eddy simulation
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Viscous fingering in magnetic fluids: numerical simulation of radial Hele–Shaw flow

1999

Abstract In this paper, the viscous fingering phenomena of the magnetic liquids in the case when the magnetic field is applied normally to the Hele–Shaw cell is investigated by the numerical simulation technique. It is shown that the magnetic field causes additional destabilization of the free interface arising at the air injection in the magnetic liquid. Here the peculiarities of the interface dynamics – inward motion of the tips of the fjords, the gyration radius dependence on the perimeter found by the numerical simulations are in good accordance with the experiments.

Materials scienceComputer simulationDynamics (mechanics)MechanicsRadiusCondensed Matter PhysicsGyrationElectronic Optical and Magnetic MaterialsMagnetic fieldCondensed Matter::Soft Condensed MatterPhysics::Fluid DynamicsViscous fingeringHele-Shaw flowClassical mechanicsSecondary air injectionJournal of Magnetism and Magnetic Materials
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Discrete element simulations of crumpling of thin sheets

2009

Forced crumpling of stiff self-avoiding sheets is studied by discrete element simulations. Simulations display stress condensation and scaling of ridge energy in agreement with theoretical expectations for elastic and frictionless sheets, and extends such behavior to elasto-plastic sheets. Crumpling of ideally elastic and frictionless sheets is compared to that of elasto-plastic sheets and sheets with friction.

Materials scienceCondensationGeneral Physics and AstronomyNanotechnologyMechanicsThin sheetPhysics::Classical PhysicsRidge (differential geometry)Discrete element methodPhysics::Fluid DynamicsCondensed Matter::Soft Condensed MatterStress (mechanics)Hardware and ArchitecturePhysics::Space PhysicsScalingComputer Physics Communications
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Amorphous silica between confining walls and under shear: a computer simulation study

2002

Molecular dynamics computer simulations are used to investigate a silica melt confined between walls at equilibrium and in a steady-state Poisseuille flow. The walls consist of point particles forming a rigid face-centered cubic lattice and the interaction of the walls with the melt atoms is modelled such that the wall particles have only a weak bonding to those in the melt, i.e. much weaker than the covalent bonding of a Si-O unit. We observe a pronounced layering of the melt near the walls. This layering, as seen in the total density profile, has a very irregular character which can be attributed to a preferred orientational ordering of SiO4 tetrahedra near the wall. On intermediate lengt…

Materials scienceCondensed matter physicsStatistical Mechanics (cond-mat.stat-mech)Shear viscosityGeneral Physics and AstronomyFOS: Physical sciencesSlip (materials science)Disordered Systems and Neural Networks (cond-mat.dis-nn)Condensed Matter - Disordered Systems and Neural NetworksPhysics::Fluid DynamicsMolecular dynamicsLattice (order)TetrahedronPhysical and Theoretical ChemistryLayeringAmorphous silicaCondensed Matter - Statistical Mechanics
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Glass transition in confined geometry.

2010

Extending mode-coupling theory, we elaborate a microscopic theory for the glass transition of liquids confined between two parallel flat hard walls. The theory contains the standard MCT equations in bulk and in two dimensions as limiting cases and requires as input solely the equilibrium density profile and the structure factors of the fluid in confinement. We evaluate the phase diagram as a function of the distance of the plates for the case of a hard sphere fluid and obtain an oscillatory behavior of the glass transtion line as a result of the structural changes related to layering.

Materials scienceCondensed matter physicsStructure (category theory)General Physics and AstronomyFOS: Physical sciencesFunction (mathematics)Condensed Matter - Soft Condensed MatterEquilibrium densityPhysics::Fluid DynamicsLine (geometry)Soft Condensed Matter (cond-mat.soft)LayeringMicroscopic theoryGlass transitionPhase diagramPhysical review letters
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