Search results for "r process"

showing 10 items of 665 documents

Low-Prandtl Number Natural Convection in Volumetrically Heated Rectangular Enclosures - III. Shallow Cavity, AR=0.25

2001

Abstract Natural convection in a volumetrically heated rectangular enclosure filled with a low-Prandtl number (Pr=0.0321) fluid was studied by direct numerical two-dimensional simulation. The enclosure had isothermal side walls and adiabatic top/bottom walls. The aspect ratio was 4 and the Grashof number Gr, based on conductive maximum temperature and cavity width, ranged from 3.79 × 104 to 1.26 × 109. According to the value of Gr, different flow regimes were obtained: steady-state, periodic, and chaotic. The first instability of the steady-state solution occurred at Gr≈3×105; the resulting time-periodic flow field consisted of a central rising plume and of convection rolls, periodically ge…

Fluid Flow and Transfer ProcessesConvectionNatural convectionMaterials scienceNatural ConvectionEnclosureMechanical EngineeringPrandtl numberEnclosureGrashof numberThermodynamicsInternal Heat GenerationMechanicsCondensed Matter PhysicsNusselt numberPlumePhysics::Fluid Dynamicssymbols.namesakeCombined forced and natural convectionsymbolsCFDSettore ING-IND/19 - Impianti Nucleari
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Effect of a finite external heat transfer coefficient on the Darcy-Bénard instability in a vertical porous cylinder

2013

Publised version of an article from the journal: Physics of Fluids. Copyright (2013) American Institute of Physics. This article may be downloaded for personal use only. Any other use requires prior permission of the author and the American Institute of Physics. Article appears in Volume 25 issue 4 of the journal: http://dx.doi.org/10.1063/1.4799253 The onset of thermal convection in a vertical porous cylinder is studied by considering the heating from below and the cooling from above as caused by external forced convection processes. These processes are parametrised through a finite Biot number, and hence through third-kind, or Robin, temperature conditions imposed on the lower and upper b…

Fluid Flow and Transfer ProcessesConvectionPhysicsBiot numberConvective heat transferMechanical EngineeringComputational MechanicsThermodynamicsMechanicsHeat transfer coefficientCondensed Matter PhysicsInstabilityVDP::Mathematics and natural science: 400::Mathematics: 410VDP::Mathematics and natural science: 400::Physics: 430NATURAL CONVECTIONForced convectionPhysics::Fluid DynamicsPOROUS MEDIUMEIGENVALUESMechanics of MaterialsNormal modeLINEAR STABILITY ANALYSISCylinderPhysics of Fluids
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Soret coefficient of nanoparticles in ferrofluids in the presence of a magnetic field

1998

Experiments on a nonstationary separation of nanometer-sized Mn0.5Zn0.5Fe2O particles of hydrocarbon-based ferrocolloids in a flat vertical thermal diffusion column are performed. By using a modified separation theory which accounts for a one-dimensional mixed (thermal and concentration) convection in the column, the Soret coefficient of lyophilized nanoparticles from the separation curves are calculated. It is shown that in a zero magnetic field particles are transferring toward decreasing temperatures. The thermal diffusion ratio αT reaches a value αT≈+20. A significant influence of a uniform magnetic field B on particle separation is observed. If B is oriented along the temperature gradi…

Fluid Flow and Transfer ProcessesConvectionPhysicsFerrofluidField (physics)Mechanical EngineeringComputational MechanicsThermodynamicsCondensed Matter PhysicsThermal diffusivityMagnetic fieldTemperature gradientNuclear magnetic resonanceMechanics of MaterialsParticleMagnetic pressurePhysics of Fluids
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MHD free convection in a liquid-metal filled cubic enclosure. II. Internal heating

2002

The buoyancy-driven magnetohydrodynamic flow in a liquid-metal filled cubic enclosure was investigated by three-dimensional numerical simulation. The enclosure was differentially heated at two opposite vertical walls, all other walls being adiabatic, and a uniform magnetic field was applied orthogonal to the temperature gradient and to the gravity vector. The Rayleigh number was 105 and the Prandtl number was 0.0321 (characteristic of Pb–17Li at 573 K). The Hartmann number was made to vary between 102 and 103 and the electrical conductance of the walls between 0 and ∞. The continuity, momentum and enthalpy transport equations, in conjunction with a Poisson equation for the electric potentia…

Fluid Flow and Transfer ProcessesConvectionPhysicsNatural convectionEnclosureMechanical EngineeringPrandtl numberEnclosureFree ConvectionInternal Heat GenerationThermodynamicsRayleigh numberMechanicsMagnetohydrodynamicCondensed Matter PhysicsHartmann numberPhysics::Fluid Dynamicssymbols.namesakesymbolsMagnetohydrodynamic driveMagnetohydrodynamicsCFDSettore ING-IND/19 - Impianti NucleariInternational Journal of Heat and Mass Transfer
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Efficient finite-difference scheme for solving some heat transfer problems with convection in multilayer media

2000

Abstract An efficient finite-difference method for solving the heat transfer equation with piecewise discontinuous coefficients in a multilayer domain is developed. The method may be considered as a generalization of the finite-volumes method for the layered systems. We apply this method with the aim to reduce the 3D or 2D problem to the corresponding series of 2D or 1D problems. In the case of constant piecewise coefficients, we obtain the exact discrete approximation of the steady-state 1D boundary-value problem.

Fluid Flow and Transfer ProcessesConvectionSeries (mathematics)GeneralizationMechanical EngineeringHeat transferPiecewiseFinite difference methodApplied mathematicsBoundary value problemCondensed Matter PhysicsConstant (mathematics)MathematicsInternational Journal of Heat and Mass Transfer
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Thermoconvective instabilities in an inclined porous channel heated from below

2011

Abstract The thermoconvective instability in an inclined rectangular channel filled with a fluid saturated porous medium and heated from below with a uniform flux is investigated. A stationary parallel buoyant flow with a linear temperature change in the transverse direction is considered. The linear stability to transverse and longitudinal roll disturbances of this basic state is examined. The thermoconvective instability onset of transverse rolls occurs when the Darcy–Rayleigh number exceeds a critical value, that increases with the inclination angle. The critical Darcy–Rayleigh number is discontinuous at the inclination angle 23.4749° above the horizontal. It is shown that, when the incl…

Fluid Flow and Transfer ProcessesDARCY’S LAWMaterials scienceDarcy's lawbusiness.industryLINEAR STABILITYMechanical EngineeringMechanicsCondensed Matter PhysicsCritical valueInstabilityPhysics::Fluid DynamicsTransverse planeOpticsPOROUS MEDIUMCONVECTIVE ROLLSHeat transferINCLINED CHANNELBoundary value problembusinessPorous mediumLinear stability
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Recent advances in the preparation of zeolites for the selective catalytic reduction of NOx in diesel engines

2019

Metal-exchanged zeolites with small pore sizes have attracted much attention in recent years due to their application in the selective catalytic reduction (SCR) of NOx in diesel engines. Typically, copper-chabazite (e.g. Cu-SSZ-13) has been gradually used as an SCR catalyst in heavy-duty diesel vehicles over the last decade due to its relatively excellent catalytic performance and stability. However, most SSZ-13 zeolites are still prepared via the traditional hydrothermal process in the presence of organic templates, requiring consecutive solid separation and thermal treatment steps to achieve the final zeolite products. In recent years, several strategies for the environmentally friendly p…

Fluid Flow and Transfer ProcessesDiesel fuelMaterials scienceChemical engineeringChemistry (miscellaneous)Process Chemistry and TechnologyChemical Engineering (miscellaneous)Selective catalytic reductionZeoliteEnvironmentally friendlyCatalysisNOxCatalysisReaction Chemistry & Engineering
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Investigation of Flow and Heat Transfer in Corrugated-Undulated Plate Heat Exchangers

2000

An experimental and numerical investigation of heat transfer and fluid flow was conducted for corrugated-undulated plate heat exchanger configurations under transitional and weakly turbulent conditions. For a given geometry of the corrugated plates the geometrical characteristics of the undulated plates, the angle formed by the latter with the main flow direction, and the Reynolds number were made to vary. Distributions of the local heat transfer coefficient were obtained by using liquid-crystal thermography, and surface-averaged values were computed; friction coefficients were measured by wall pressure tappings. Overall heat transfer and pressure drop correlations were derived. Three-dimen…

Fluid Flow and Transfer ProcessesDynamic scraped surface heat exchangerMaterials scienceHeat transfer enhancementPlate heat exchangerThermodynamicsTurbulence modelHeat transfer coefficientMechanicsCondensed Matter PhysicsHeat TransferChurchill–Bernstein equationNusselt numberPhysics::Fluid DynamicsFluid flowbody-fitted gridHeat transferMicro heat exchangerPlate heat exchangerCFDSettore ING-IND/19 - Impianti Nucleari
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A mathematical simulation of high temperature induction heating of electroconductive solids

2007

The mathematical model of non-stationary coupled electromagnetic and thermal processes in polarizable and magnetizable axisymmetric electroconductive solids subjected to electromagnetic field generated by external currents is proposed. The processes parameters are connected through heat sources and temperature dependence of material characteristics. The problem is solved by finite element method. The process of induction heating of a finite steel cylinder is considered.

Fluid Flow and Transfer ProcessesElectromagnetic fieldInduction heatingMaterials scienceMathematical modelMechanical EngineeringRotational symmetryThermodynamicsMechanicsCondensed Matter PhysicsFinite element methodPolarizabilityThermalElectrical conductorInternational Journal of Heat and Mass Transfer
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Solid inclusions in an electromagnetically induced recirculated turbulent flow: Simulation and experiment

2014

Abstract The paper presents the numerical and the experimental investigation of the particle-laden recirculated turbulent flow of liquid metal that is driven by electromagnetic force. Such flow is typical for induction metallurgical furnaces. The paper describes the behaviour of solid spherical particles that are mixed in the flow from a top surface of a melt and covers 3 stages of an admixing process as well as deposition of inclusions on the wall of a vessel. Experimental investigation of particles concentration at the quasi-stationary stage is fulfilled on the basis of a novel idea: ferromagnetic particles are proposed as a physical model of non-conductive inclusions in liquid metal at t…

Fluid Flow and Transfer ProcessesElectromagnetic fieldLiquid metalMaterials scienceTurbulenceMechanical EngineeringFlow (psychology)General Physics and AstronomyInduction furnaceMechanicsPhysics::Fluid DynamicsMagnetParticleDeposition (phase transition)International Journal of Multiphase Flow
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