Search results for " Flux"

showing 10 items of 583 documents

Upwind Relativistic MHD Code for Astrophysical Applications

2003

We describe the status of devolpment of a 2.5D numerical code to solve the equations of ideal relativistic magnetohydrodynamics. The numerical code, based on high-resolution shock-capturing techniques, solves the equations written in conservation form and computes the numerical fluxes using a linearized Riemann solver. A special procedure is used to force the conservation of magnetic flux along the evolution.

Physicssymbols.namesakeIdeal (set theory)Accretion discAstrophysics::High Energy Astrophysical PhenomenasymbolsCode (cryptography)Numerical fluxApplied mathematicsMagnetohydrodynamicsConservation formRiemann solverMagnetic flux
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A Divergence-Free High-Resolution Code for MHD

2001

We describe a 2.5D numerical code to solve the equations of ideal magnetohydrodynamics (MHD). The numerical code, based on high-resolution shock-capturing (HRSC) techniques, solves the equations written in conservation form and computes the numerical fluxes using a linearized Riemann solver. A special procedure is used to force the conservation of magnetic flux along the time.

Physicssymbols.namesakeIdeal (set theory)Internal energyCode (cryptography)symbolsApplied mathematicsMagnetohydrodynamicsDivergence (statistics)Conservation formMagnetic fluxRiemann solver
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Magnetic Control of Convection in Liquid Metal Heated from Above

1999

We investigated experimentally the buoyancy driven convection induced by localized central heating from above in cylindrical tanks filled with liquid metal eutectic alloy (low-Prandtl-number liquid). The experiments were carried out for two aspect ratios A = (radius/height) = 4.125 and 0.333. Time-averaged local temperature distributions and radial and azimuthal velocity components in the liquid at different distances from heater axis were measured. It is shown that maximum temperature gradient is centered in vicinity heater. Temperature difference in radial direction creates pressure gradient between heater and cold wall regions. This gradient leads to upraising of liquid nearly heater and…

Physics::Fluid DynamicsConvectionLiquid metalBuoyancyMaterials scienceHeat fluxConvective heat transferengineeringMechanicsengineering.materialNusselt numberPressure gradientIntensity (heat transfer)
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Kinetic model for steady heat flow

1986

We construct a consistent solution of the Bhatnagar-Gross-Krook (BGK) model kinetic equation describing a system in a steady state with constant pressure and nonuniform temperature. The thermal profile is not linear and depends on the interaction potential. All the moments of the distribution function are given as polynomials in the local thermal gradient. In particular, the heat flux always obeys the (linear) Fourier law.

Physics::Fluid DynamicsPhysicsTemperature gradientSteady stateDistribution functionHeat fluxKinetic modelThermalTurbulence kinetic energyKinetic theory of gasesThermodynamicsMechanicsNonlinear Sciences::Cellular Automata and Lattice GasesPhysical Review A
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Flux of a Vector Field

2012

In this chapter we concentrate on aspects of vector calculus. A common physical application of this theory is the fluid flow problem of calculating the amount of fluid passing through a permeable surface. The abstract generalization of this leads us to the flux of a vector field through a regular 2-surface in \(\mathbb{R}^3\). More precisely, let the vector field F in \(\mathbb{R}^3\) represent the velocity vector field of a fluid. We immerse a permeable surface S in that fluid, and we are interested in the amount of fluid flow across the surface S per unit time. This is the flux integral of the vector field F across the surface S

Physics::Fluid DynamicsPhysicssymbols.namesakeField (physics)Mathematical analysisGaussian surfacesymbolsFluxVector fieldElectric fluxVector calculusMagnetic fluxVector potential
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Effect of a Steady Magnetic Field and Imposed Rotation of Vessel on Heat and Mass Transfer in Swirling Recirculating Flows

1999

A simplified theoretical model for the solidification interface shape prediction is introduced and tested. We linearised a coupled hydrodynamic-solidification problem about the state with a flat interface. In such a way we split the problem into a hydrodynamic part with a flat solid-liquid front and a solidification part with a calculated heat flux from the liquid phase. The method allows obvious conclusions on optimum heat conditions near the solidification interface providing its flatness and maximum pulling velocity at the same time. Comparison to the results by FLUENT package showed that the method provides a reasonable accuracy even for a noticeably deformed interface shape. Another pa…

Physics::Fluid DynamicsRotating magnetic fieldMaterials scienceConvective heat transferComputer simulationHeat fluxFlatness (systems theory)FluentThermodynamicsThermomagnetic convectionMechanicsRotation
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Limits on the diffuse flux of ultra-high energy neutrinos using the Pierre Auger Observatory

2012

Abstract The surface detector array of the Pierre Auger Observatory is sensitive to ultra-high energy neutrinos in the cosmic radiation. These particles can interact close to ground, both through charged and neutral currents in the atmosphere (down-going) and, for tau neutrinos, through the Earth-skimming mechanism (up-going) where a tau lepton is produced in the Earth's crust that can emerge and decay in the atmosphere. Both types of neutrino-induced events produce an inclined shower that can be identified by the presence of a broad time structure of signals in the water-Cherenkov detectors. Using data collected from the surface detector array of the Pierre Auger Observatory, we present th…

Pierre Auger ObservatoryPhysicsNuclear and High Energy PhysicsHigh energy010308 nuclear & particles physicsPhysics::Instrumentation and DetectorsAstrophysics::High Energy Astrophysical PhenomenaDetectorAstrophysics::Instrumentation and Methods for AstrophysicsFísicaCosmic rayAstrophysics7. Clean energy01 natural sciencesAtmosphere13. Climate action0103 physical sciencesDiffuse fluxHigh Energy Physics::ExperimentNeutrino010303 astronomy & astrophysicsInstrumentationLepton
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Multistage recovery process of seaweed pigments: Investigation of ultrasound assisted extraction and ultra-filtration performances

2017

International audience; The objectives of this study were first to evaluate the performance of seaweed pigments’ recovery through ultrasound assisted extraction (UAE) and ultra-filtration (UF), and second to investigate the membrane fouling mechanism and evidence the threshold flux during filtration. The pigments’ recovery from the extract was performed using 5 kDa and 10 kDa ultra-filtration membranes. Results showed that increasing the extraction temperature in the range of 40–60 °C was proportional to chlorophyll extraction efficiency, while the maximal carotenoid yield was achieved at 50 °C. Ultrasonic power (from 100 W to 300 W) facilitated the extraction of both chlorophylls and carot…

PigmentsMembrane fouling[SDV.BIO]Life Sciences [q-bio]/BiotechnologyGeneral Chemical Engineering[SDV]Life Sciences [q-bio]Biochemistrylaw.inventionchemistry.chemical_compound0404 agricultural biotechnologylawUltra-filtration[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringCarotenoidFiltrationchemistry.chemical_classificationChromatographyFoulingMembrane foulingExtraction (chemistry)Threshold flux04 agricultural and veterinary sciencesPermeationSeaweed040401 food scienceMembranechemistryChlorophyllUltrasound-assisted extraction[SDV.AEN]Life Sciences [q-bio]/Food and NutritionFood ScienceBiotechnology
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Intense magmatic gas leakage through the lake of Copahue volcano.

2015

Plume flux
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A new approach for modeling dry deposition velocity of particles

2018

Abstract The dry deposition process is recognized as an important pathway among the various removal processes of pollutants in the atmosphere. In this field, there are several models reported in the literature useful to predict the dry deposition velocity of particles of different diameters but many of them are not capable of representing dry deposition phenomena for several categories of pollutants and deposition surfaces. Moreover, their applications is valid for specific conditions and if the data in that application meet all of the assumptions required of the data used to define the model. In this paper a new dry deposition velocity model based on an electrical analogy schema is propose…

PollutionAtmospheric ScienceInertial frame of reference010504 meteorology & atmospheric sciencesmedia_common.quotation_subjectDry deposition velocityParticle flux010501 environmental sciences01 natural sciencesParticle fluxMutual influenceSettore ING-IND/19 - Impianti Nucleari0105 earth and related environmental sciencesGeneral Environmental Sciencemedia_commonPollutant2300TurbulenceParametrizationMechanicsAtmospheric dispersion modelingDry deposition velocity; Parametrization; Particle flux; Radioactive pollutants; Removal processes; 2300; Atmospheric ScienceRadioactive pollutantDeposition (aerosol physics)Environmental scienceRemoval processe
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