Search results for "Convection"

showing 10 items of 332 documents

Onset of convection in a vertical porous cylinder with a permeable and conducting side boundary

2015

Abstract The onset of natural convection in a vertical porous cylinder saturated by a fluid is studied. The lateral confinement of the porous cylinder is due to an external porous medium having a permeability much smaller than that of the cylinder. Thus, the vertical side boundary of the cylinder is permeable and constrained by given pressure and temperature distributions. The lower and upper plane boundaries of the cylinder are impermeable walls. The lower wall is subject to a uniform heat flux, while the upper wall has a uniform temperature. The basic motionless state displays a uniform and vertical temperature gradient oriented downward. The linear stability analysis is carried out by us…

ConvectionRayleigh–Bénard problemMaterials scienceNatural convectionGeneral EngineeringPorous mediumMechanicsCondensed Matter PhysicsPhysics::Fluid DynamicsTemperature gradientsymbols.namesakeMathieu functionClassical mechanicsHeat fluxNatural convectionDispersion relationsymbolsVertical cylinderLinear stabilityPorous mediumLinear stability
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Effects of Red Cell Spacing and Red Cell Movement Upon Oxygen Release Under Conditions of Maximally Working Skeletal Muscle

1989

The impacts of the particulate nature of blood upon capillary O 2 release have been studied extensively by Federspiel and Sarelius [8] and by Federspiel and Popel [9]. The latter authors found that the O 2 flux out of a capillary decreases rapidly as intracapillary red blood cell spacing increases. The O 2 flux out of a single RBC, however, is enhanced as long as the inter-erythrocytic plasma gap does not exceed the “zone-of-influence” of a single RBC, which they determined to be about 1 capillary diameter. In their model, they considered spherical red cells contained in a cylindrical tube filled with plasma, on the lateral surface of which a boundary Po 2 was specified. Based on earlier st…

ConvectionRed CellLateral surfaceChemistryCapillary actionFluxchemistry.chemical_elementPlasmaAnatomyOxygenRed blood cellmedicine.anatomical_structuremedicineBiophysics
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The influence of absorbed solar radiation by Saharan dust on hurricane genesis

2015

To date, the radiative impact of dust and the Sahar an air layer (SAL) on North Atlantic hurricane activity is not yet known. According to previous studies, dust stabilizes the atmosphere due to absorption of solar radiation but thus shifts convection to regions more conducive for hurricane genesis. Here we analyze differences in hurricane genesis and frequency from ensemble sensitivity simulations with radiatively active and inactive dust in the aerosol-climate model ECHAM6-HAM. We investigate dust burden and other hurricane-related variables and determine their influence on disturbances which develop into hurricanes (developing disturbances, DDs) and those which do not (nondeveloping dist…

ConvectionSaharan Air LayerAtmospheric ScienceAtlantic hurricane530 PhysicsMineral dustAtmospheric sciencescomplex mixturesrespiratory tract diseasesAtmosphereGeophysicsSpace and Planetary ScienceClimatologyEarth and Planetary Sciences (miscellaneous)Radiative transferEnvironmental scienceClimate modelTropical cyclone550 Earth sciences & geology
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Warming of water in a glass

2016

The article focuses on the process of water warming from 0 °C in a glass. An experiment is performed that analyses the temperature in the top and bottom layers of water during warming. The experimental equipment is very simple and can be easily set up using devices available in schools. The temperature curves obtained from the experiment help us to understand the process of convection in the glass and to determine the temperature at which the density of water is maximum. In addition, computational fluid dynamics—CFD modeling is carried out to facilitate better comprehension of the phenomenon observed in the experiment.

ConvectionScience instruction05 social sciences050301 educationGeneral Physics and AstronomyAtmospheric sciences01 natural sciencesEngineering physicsEducationPhysics::Fluid DynamicsScientific method0103 physical sciences010306 general physics0503 educationPhysics::Atmospheric and Oceanic PhysicsPhysics Education
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Transient solutions for temperature and pressure waves in fluid-saturated porous rocks

1996

SUMMARY In this paper, hot-fluid migration dynamics for a fluid-saturated porous rock is analysed theoretically. We first recall a Bonafede model implemented with a classical scale analysis; this allows us to discuss a fully non-linear formulation related to transient phenomena, which is solved analytically as a solitary shock wave. The resulting time-scales are particularly small, corresponding to intense short-time geothermal phenomena. A novel non-linear migration mechanism, related to Darcy convection, is also discussed.

ConvectionShock waveGeophysicsTemperature and pressureMaterials scienceGeochemistry and PetrologyScale analysis (mathematics)Fluid dynamicsGeophysicsMechanicsTransient (oscillation)PorosityGeothermal gradientGeophysical Journal International
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Interannual variability of circulation under spring ice in a boreal lake

2014

A small range (, 1uC) of under-ice water temperature is shown to result in remarkably different circulation regimes under spring ice in a deep, oligotrophic boreal lake. With the water column at , 4uC, melting of snow led to deepening vertical convection before ice break and a final depth of convection inversely correlated with earlier deep-water temperature. We attribute that to the nonlinear dependence of water density on temperature, albeit further affected by stochastic weather factors. In four of nine study years, convection led to complete under-ice overturn of the lake, indicating that this may not be uncommon in similar lakes with steep topography. River inflow and more intensive wa…

ConvectionShoregeographygeography.geographical_feature_categoryThermal barta1171Aquatic ScienceAtmospheric temperature rangeOceanographySnowPhysics::GeophysicsPhysics::Fluid DynamicsWater columnBoreal13. Climate actionClimatologyLittoral zoneAstrophysics::Earth and Planetary AstrophysicsPhysics::Atmospheric and Oceanic PhysicsGeologyLimnology and Oceanography
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Analysis of the dopant segregation effects at the floating zone growth of large silicon crystals

1997

Abstract A computer simulation is carried out to study the dopant concentration fields in the molten zone and in the growing crystal for the floating zone (FZ) growth of large (> 100mm) Si crystals with the needle-eye technique and with feed/crystal rotation. The mathematical model developed in the previous work is used to calculate the shape of the molten zone and the velocity field in the melt. The influence of melt convection on the dopant concentration field is considered. The significance of the rotation scheme of the feed rod and crystal on the dopant distribution is investigated. The calculated dopant concentration directly at the growth interface is used to determine the normalized …

ConvectionSiliconDopantCondensed matter physicschemistry.chemical_elementMineralogyCondensed Matter PhysicsRotationInorganic ChemistryCrystalchemistryElectrical resistivity and conductivityHeat transferMaterials ChemistrySingle crystalJournal of Crystal Growth
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Convective phenomena in large melts including magnetic fields

2007

The set of characteristic parameters which describe modern large industrial CZ silicon single crystal growth systems is introduced. The main melt flow driving mechanisms are considered, and the characteristic density values of various in the melt acting forces are estimated. The analysis is illustrated with examples of numerical simulation and comparisons with experiments.

ConvectionSingle crystal growthComputer simulationSiliconChemistrychemistry.chemical_elementMineralogyCrystal growthMechanicsCondensed Matter PhysicsMagnetic fieldInorganic ChemistryMaterials ChemistryFluid dynamicsMelt flow indexJournal of Crystal Growth
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Generalization of a finite-difference numerical method for the steady-state and transient solutions of the nernst—planck flux equations

1985

Abstract A generalization of the numerical method of Brumleve and Buck for the solution of Nernst—Planck equations when convective flux and electric current are involved has been developed. The simulation procedure was applied to a specific case: transport of strong electrolytes in a wide-pore membrane with simultaneous diffusion, convection and electric current. Good agreement was found between experimental data and computed results.

ConvectionSteady stateChemistryNumerical analysisAnalytical chemistryFinite differenceFluxFiltration and SeparationMechanicsBiochemistryQuantitative Biology::Subcellular ProcessesStrong electrolytesymbols.namesakesymbolsGeneral Materials ScienceNernst equationPhysical and Theoretical ChemistryElectric currentJournal of Membrane Science
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Magnetic field controlled FZ single crystal growth of intermetallic compounds

2005

Abstract Intermetallic rare-earth-transition-metal compounds with their coexistence of magnetic ordering and superconductivity are still of great scientific interest. The crystal growth of bulk single crystals is very often unsuccessful due to an unfavorable solid–liquid interface geometry enclosing concave fringes. The aim of the work is the contactless control of heat and material transport during floating-zone single crystal growth of intermetallic compounds. This control is provided by a tailored design of the electromagnetic field and the resulting electromagnetically driven convection. Numerical simulations for the determination of the electromagnetic field configuration induced by th…

ConvectionSuperconductivityElectromagnetic fieldMaterials scienceMetallurgyIntermetallicMechanicsCondensed Matter PhysicsMagnetic fieldInorganic ChemistryPhysics::Fluid DynamicsThermal radiationFree surfaceMaterials ChemistryFluid dynamics
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