Search results for "bubble"

showing 10 items of 167 documents

Slip Flow Over Structured Surfaces with Entrapped Microbubbles

2008

On hydrophobic surfaces, roughness may lead to a transition to a superhydrophobic state, where gas bubbles at the surface can have a strong impact on a detected slip. We present two-phase lattice Boltzmann simulations of a Couette flow over structured surfaces with attached gas bubbles. Even though the bubbles add slippery surfaces to the channel, they can cause negative slip to appear due to the increased roughness. The simulation method used allows the bubbles to deform due to viscous stresses. We find a decrease of the detected slip with increasing shear rate which is in contrast to some recent experimental results implicating that bubble deformation cannot account for these experiments.…

Materials scienceBubbleMicrofluidicsLattice Boltzmann methodsFOS: Physical sciencesGeneral Physics and AstronomyMechanicsSlip (materials science)Surface finishCondensed Matter - Soft Condensed MatterPhysics::Fluid DynamicsShear rateClassical mechanicsMicrobubblesSoft Condensed Matter (cond-mat.soft)Couette flowPhysical Review Letters
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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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Bubble formation and motion in non-crimp fabrics with perturbed bundle geometry

2010

The behaviour of the fluid front during impregnation of non-crimp fabrics has been considered. Particular attention is paid to creation of bubbles at the fluid front and a virtual 3D model mimickin ...

Materials scienceComputer simulationTransfer moldingMechanics of MaterialsBundleCeramics and CompositesCrimpFront (oceanography)Motion (geometry)Fluid mechanicsGeometryLiquid bubbleComposite materialComposites Part A: Applied Science and Manufacturing
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2015

We develop a model for the rheology of a three-phase suspension of bubbles and particles in a Newtonian liquid undergoing steady flow. We adopt an ‘effective-medium’ approach in which the bubbly liquid is treated as a continuous medium which suspends the particles. The resulting three-phase model combines separate two-phase models for bubble suspension rheology and particle suspension rheology, which are taken from the literature. The model is validated against new experimental data for three-phase suspensions of bubbles and spherical particles, collected in the low bubble capillary number regime. Good agreement is found across the experimental range of particle volume fraction ( 0 ≤ ϕ p ≲…

Materials scienceGeneral MathematicsBubbleGeneral EngineeringGeneral Physics and AstronomyMechanical engineeringMechanicsCapillary numberSuspension (chemistry)ViscosityRheologyVolume fractionNewtonian fluidParticleProceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences
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Effect of the anode composition on the performance of reversible chlor-alkali electro-absorption cells

2020

Abstract In this work, the performances of a reversible electrochemical cell for the storage of energy using the chloralkaline process was investigated. The cell operates at room temperature with liquid electrolytes in both compartments. In the electrolyzer mode, the cell transforms a sodium chloride solution into hydrogen and chlorine, which is then disproportionated to form hypochlorous acid and hypochlorite. In fuel cell operation mode, the cell becomes an electro-absorber to oxidize hydrogen at the anode while reducing hypochlorous acid at the cathode. Because of the low solubility of hydrogen, a special mechanical device is used to produce hydrogen microbubbles in the anodic compartmen…

Materials scienceHydrogenChlor-alkalichemistry.chemical_elementFiltration and SeparationReversible electrochemical cells02 engineering and technologyElectrolyteElectrochemistryRutheniumAnalytical Chemistrylaw.inventionElectrochemical cell020401 chemical engineeringlawChlorine0204 chemical engineeringElectrolysisMicrobubbles021001 nanoscience & nanotechnologyCathodeAnodechemistryChemical engineeringElectro-absorber0210 nano-technology
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Microsphere tensiometry to measure advancing and receding contact angles on individual particles

1999

In this paper, a method to measure the advancing and receding contact angles on individual colloidal spheres is described. For this purpose, the microspheres were attached to atomic force microscope cantilevers. Then the distance to which the microsphere jumps into its equilibrium position at the air-liquid interface of a drop or an air bubble was measured. From these distances the contact angles were calculated. To test the method, experiments were done with silanized silica spheres (4.1 μm in diameter). From the experiments with drops, an advancing contact angle of 101 ± 4° was determined. A receding contact angle of 101 ± 2° was calculated from the jump-in distance into a bubble. Both ex…

Materials scienceMechanical equilibriumbusiness.industryBubbleSurface forceSurfaces and InterfacesGeneral ChemistrySurfaces Coatings and Filmslaw.inventionContact angleHysteresisOpticsPlanarSessile drop techniqueMechanics of MaterialslawMaterials ChemistrySPHERESbusinessJournal of Adhesion Science and Technology
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Conical Fiber Probe for Mechanical Stabilization of Microbubbles in Liquids

2020

We demonstrate that a cone pierced in a fiber tip can stabilize microbubles photothermally generated in liquids. Bubbles can stand and monitor pressure shocks over 3.3 bar with a sensitivity below 7 mbar.

Materials scienceOptical fiberlawFiber laserMicrobubblesFiber probeConical surfaceComposite materialA fibersSensitivity (explosives)Bar (unit)law.inventionOSA Advanced Photonics Congress (AP) 2020 (IPR, NP, NOMA, Networks, PVLED, PSC, SPPCom, SOF)
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Ultrasound-assisted bleaching: Mathematical and 3D computational fluid dynamics simulation of ultrasound parameters on microbubble formation and cavi…

2019

Abstract The implementation of ultrasound-assisted bleaching (UAB) is gaining interest in commercial oil refining, as an alternative to the current bleaching procedure (BP), because this technique has several advantages compared to the conventional BP. The mathematical and 3D computational fluid dynamics (CFD) simulation of the influence of ultrasound power, frequency and temperature for predicting microbubble formation and heat transfer in the ultrasonic treatment of soybean oil was assessed in order to optimize the UAB process. The fluctuation frequency and wave speed showed opposite effects on system response to the imposed pressure pulse. As the bubble radius shrinks to zero (after bubb…

Materials scienceOscillationBubbleInternal pressureGeneral ChemistryRadiusMechanicsIndustrial and Manufacturing EngineeringPhysics::Fluid DynamicsCavitationHeat transferUltrasonic sensorCurrent (fluid)Food ScienceInnovative Food Science & Emerging Technologies
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CFD prediction of bubble behavior in two-dimensional gas-solid fluidized beds

2009

This work focuses on the computational fluid dynamics (CFD) simulation of a laboratory-scale, two-dimensional fluidized bed and the relevant experiments in order to validate the prediction capability of the adopted codes and models. Both experimental and computational quantitative data were analyzed by means of an original digital image analysis technique, allowing for coherent comparison of computational and experimental results. In particular, this work analyzes the capability of the CFD simulations in predicting the fluctuating behavior of bubbling fluidized beds by means of frequency analysis of bubble-related phenomena.

Materials sciencebusiness.industryBubbleGeneral EngineeringMechanicsComputational fluid dynamicsCondensed Matter PhysicsAnnealing (glass)Physics::Fluid DynamicsModeling and SimulationDigital image analysisTwo-dimensional gasdigital image analysisFluidizationbusinessBond fluctuation modelBubbling fluidized bedBubbling fluidized bedCFD SIMULATIONS
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A sharp quantitative version of Alexandrov's theorem via the method of moving planes

2015

We prove the following quantitative version of the celebrated Soap Bubble Theorem of Alexandrov. Let $S$ be a $C^2$ closed embedded hypersurface of $\mathbb{R}^{n+1}$, $n\geq1$, and denote by $osc(H)$ the oscillation of its mean curvature. We prove that there exists a positive $\varepsilon$, depending on $n$ and upper bounds on the area and the $C^2$-regularity of $S$, such that if $osc(H) \leq \varepsilon$ then there exist two concentric balls $B_{r_i}$ and $B_{r_e}$ such that $S \subset \overline{B}_{r_e} \setminus B_{r_i}$ and $r_e -r_i \leq C \, osc(H)$, with $C$ depending only on $n$ and upper bounds on the surface area of $S$ and the $C^2$ regularity of $S$. Our approach is based on a…

Mathematics - Differential GeometrySoap bubbleMean curvatureOscillationApplied MathematicsGeneral Mathematics010102 general mathematicsConcentricSurface (topology)53C20 53C21 (Primary) 35B50 35B51 (Secondary)01 natural sciencesAlexandrov Soap Bubble Theorem method of moving planes stability mean curvature pinching.CombinatoricsHypersurfaceMathematics - Analysis of PDEsDifferential Geometry (math.DG)Settore MAT/05 - Analisi Matematica0103 physical sciencesFOS: Mathematics010307 mathematical physicsDiffeomorphism0101 mathematicsMathematicsAnalysis of PDEs (math.AP)
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