Search results for "aspect ratio"

showing 10 items of 45 documents

Pore fabric geometry inferred from magnetic and acoustic anisotropies in rocks with various mineralogy, permeability and porosity.

2014

14 pages; International audience; he ferrofluid impregnation technique combined with anisotropy of magnetic susceptibility measurements (AMSff) is one of the ways to analyze the 3-D geometry of the pore space in a rock and indirectly to infer the anisotropy of permeability. We applied this method on different types of rocks (sandstones and carbonates) with a range of different porosity values (10-30%) and permeability (1 mD to 1 D). To get additional information on both the pore aspect ratio and the directional anisotropy we used another technique, measuring the anisotropy of P-waves velocity (APV) in dry and water saturated conditions. Comparing between both methods shows that despite the …

Ferrofluid010504 meteorology & atmospheric sciencesCarbonate[SDU.STU.GP]Sciences of the Universe [physics]/Earth Sciences/Geophysics [physics.geo-ph][SDE.MCG]Environmental Sciences/Global Changes[SDU.STU.PE]Sciences of the Universe [physics]/Earth Sciences/PetrographyMineralogyGeometry[PHYS.PHYS.PHYS-GEO-PH]Physics [physics]/Physics [physics]/Geophysics [physics.geo-ph]Sandstone010502 geochemistry & geophysics01 natural sciences[ SDU.STU.GP ] Sciences of the Universe [physics]/Earth Sciences/Geophysics [physics.geo-ph][ PHYS.PHYS.PHYS-GEO-PH ] Physics [physics]/Physics [physics]/Geophysics [physics.geo-ph]AnisotropyPorosityP-wave-velocity[ SDU.STU.PE ] Sciences of the Universe [physics]/Earth Sciences/Petrography0105 earth and related environmental sciencesEarth-Surface ProcessesMicrostructureAspect ratio (image)Magnetic susceptibility[ SDE.MCG ] Environmental Sciences/Global ChangesGeophysicsPermeability (electromagnetism)FerrofluidAnisotropyPorous mediumPorosityGeology
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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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Velocity Distribution and Dip Phenomenon in a Large Amplitude Meandering Channel

2020

The prediction of the velocity-dip, whereby the location of the maximum velocity occurs below the water surface, could be important for defining the flow pattern and the momentum transport processes. This study explores the dip-phenomenon in a high-curvature meandering bend. With the aid of data collected in a laboratory flume, the influence of the distance to the outer bank, the channel's curvature and the aspect ratio on the formation and position of the velocity-dip is investigated. Results show that, for the aspect ratios examined, a dip forms in the velocity profiles and its position varies along the bend as a function of the channel's curvature and the aspect ratio. Based on the measu…

FlumeMomentumPhysicsAmplitudeFlow velocityPosition (vector)GeometryFlow velocity prediction exeperiments secondary flowCurvatureSecondary flowAspect ratio (image)Settore ICAR/01 - Idraulica
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Accuracy in dynamic laser speckle: optimum size of speckles for temporal and frequency analyses

2016

The dynamic laser-speckle phenomenon has been used as a potential tool to monitor the activity of many biological and nonbiological samples; however, a key tailoring of the experimental configuration must be taken into account to avoid wrong measurements, since the general rules addressed to speckle as information cannot be directly adopted in dynamic laser-speckle monitoring. The speckle/pixel size ratio is provided by the f-number and by the magnification of the macro lens, and attention is mainly directed toward adjusting a speckle/pixel ratio higher than 1. However, a speckle/pixel ratio much higher than one does not mean an optimum adjustment. This work tested different apertures with …

Frequency responsePixelbusiness.industryApertureComputer scienceGeneral EngineeringSpeckle noise02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesAtomic and Molecular Physics and Opticslaw.invention010309 opticsLens (optics)Speckle patternOpticsPixel aspect ratiolawElectronic speckle pattern interferometry0103 physical sciences0210 nano-technologybusinessOptical Engineering
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The Optimal Aspect Ratio for Plasmonic Bio-Sensing

2012

The sensitivity of plasmonic particles to the immediate dielectric environment allows to monitor the dielectric constant of liquids and binding events of molecules to the gold particle surface. Here, by means of simulations and experiments, I investigate which aspect ratio (AR) of gold nanorods is ideal for plasmonic sensing by employing various measures for “ideal” behavior.

Ideal (set theory)Materials sciencebusiness.industryPhysics::OpticsOptoelectronicsParticleMoleculeNanorodDielectricSensitivity (control systems)businessAspect ratio (image)Plasmon
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On the Performance of A Long Draft Tube Self-Ingesting Reactor for Gas-Liquid Operations

2005

A novel self-inducing reactor, is presented. Its main features are a high aspect-ratio and a fairly narrow multiple-impeller draft tube, through which the gas phase is ingested and drowned down to the vessel bottom, where it is dispersed into the rising liquid. Preliminary experimental results on the apparatus performance are presented.

ImpellerSettore ING-IND/25 - Impianti ChimiciTubes (components)Aspect ratioIngestion (engines)
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Gas-liquid-solid Operation of a High Aspect Ratio Self-ingesting Reactor

2012

Gas-liquid stirred vessels are widely employed to carry out chemical reactions involving a gas reagent and a liquid phase. The usual way for introducing the gas stream into the liquid phase is through suitable distributors placed below the impeller. An interesting alternative is that of using “self ingesting” vessels where the headspace gas phase is injected and dispersed into the vessel through suitable surface vortices. In this work the performance of a Long Draft Tube Self-ingesting Reactor (LDTSR) dealing with three-phase (gas-liquid-solid) systems, is investigated. Preliminary experimental results on the effectiveness of this contactor for particle suspension and gas-liquid mass transf…

Mass transfer coefficientMaterials scienceMass transfer coefficientAspect ratioGeneral Chemical EngineeringSettore ING-IND/25 - Impianti ChimiciSelf inducingLiquid solidGas-liquid-solid reactors stirred vessels self inducing kLa mass transfer coefficient simplified dynamic pressure methodPhysics::Fluid DynamicskLaGas-liquid-solid reactorStirred vesselsComposite material
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Mass transfer and hydrodinamic characteristics of a high aspect ratio self-ingesting reactor for gas-liquid operations

2007

Abstract The mass transfer performance of a gas–liquid self-ingesting stirred reactor is reported both for coalescing and non-coalescing systems. The vessel features are a high aspect ratio and a rather narrow multiple-impeller draft tube, through which the gas phase is ingested and led down to the vessel bottom, where it is finely dispersed into the liquid rising in the annular portion of the vessel. Comparison is made between k L a values determined by several variants of the dynamic method, among which pure oxygen absorption in a previously de-gassed liquid phase. Results show that the gas–liquid mass transfer coefficient values obtained with the last approach are remarkably larger than …

Mass transfer coefficientstirred vesselChromatographyChemistryApplied MathematicsGeneral Chemical EngineeringContinuous stirred-tank reactormass transfer coefficientself inducingGeneral ChemistryMechanicsdynamic techniqueAspect ratio (image)Industrial and Manufacturing EngineeringAgitatorDraft tubeMass transferAbsorption (chemistry)k(L)agas-liquid reactorContactor
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Correction of the tip convolution effects in the imaging of nanostructures studied through scanning force microscopy

2014

AFM images are always affected by artifacts arising from tip convolution effects, resulting in a decrease in the lateral resolution of this technique. The magnitude of such effects is described by means of geometrical considerations, thereby providing better understanding of the convolution phenomenon. We demonstrate that for a constant tip radius, the convolution error is increased with the object height, mainly for the narrowest motifs. Certain influence of the object shape is observed between rectangular and elliptical objects with the same height. Such moderate differences are essentially expected among elongated objects; in contrast they are reduced as the object aspect ratio is increa…

Materials scienceAspect ratiobusiness.industryMechanical Engineeringmedia_common.quotation_subjectMagnitude (mathematics)BioengineeringGeneral ChemistrySubstrate (electronics)RadiusConvolutionOpticsMechanics of MaterialsSurface roughnessContrast (vision)General Materials ScienceElectrical and Electronic EngineeringbusinessConstant (mathematics)media_commonNanotechnology
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Numerical investigation of the mechanical properties of a novel hybrid polymer composite reinforced with graphene and MXene nanosheets

2020

Abstract This paper presents a numerical investigation of the elastic properties of a novel hybrid polymer composite reinforced with graphene and MXene nanosheets. A finite element computational model was developed to analyze the mechanical properties of a new polymer hybrid composite reinforced with MXene and graphene taking into account the properties of the 2D nanosheets, different aspect ratios, placement options and volume fractions of nanoreinforcements, as well as the interaction effects between the nanofillers and the surrounding polymer matrix. Using the developed numerical model, the influences of the interface layer properties, MXene and graphene aspect ratio, alignment and volum…

Materials scienceGeneral Computer SciencePolymer nanocompositeComposite numberGeneral Physics and Astronomy02 engineering and technology010402 general chemistryOrthotropic material01 natural scienceslaw.inventionlawGeneral Materials ScienceComposite materialchemistry.chemical_classificationGraphenehybrid composites MXene graphene numerical simulation elastic propertiesGeneral ChemistryPolymer021001 nanoscience & nanotechnologyAspect ratio (image)0104 chemical sciencesComputational MathematicschemistryMechanics of MaterialsVolume fraction0210 nano-technologyMXenesComputational Materials Science
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