Search results for "cfd"

showing 10 items of 249 documents

Strain-gradient elastic-plastic material models and assessment of the higher order boundary conditions

2007

Abstract A gradient elastic material model exhibiting gradient kinematic and isotropic hardening is addressed within a thermodynamic framework suitable to cope with nonlocal-type continua. The Clausius–Duhem inequality is used, in conjunction with the concepts of energy residual, insulation condition and locality recovery condition, to derive all the pertinent restrictions upon the constitutive equations, including the PDEs and the related higher order (HO) boundary conditions that govern the gradient material behaviour. Through a suitable limiting procedure, the HO boundary conditions are shown to interpret the action, upon the body's boundary surface, of idealized extra HO constraints cap…

Mechanical EngineeringTraction (engineering)Mathematical analysisConstitutive equationGeneral Physics and AstronomyBoundary (topology)Mixed boundary conditionClausius–Duhem inequalityBoundary conditions in CFDMechanics of MaterialsGeneral Materials ScienceCalculus of variationsBoundary value problemMathematicsEuropean Journal of Mechanics - A/Solids
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Large-Eddy Simulation of Turbulent Flow and Heat Transfer in Plane and Rib-Roughened Channels

1992

Large-eddy simulation results are presented and discussed for turbulent flow and heat transfer in a plane channel with and without transverse square ribs on one of the walls. They were obtained with the finite-difference code Harwell-FLOW3D, Release 2, by using the PISOC pressure-velocity coupling algorithm, central differencing in space, and Crank-Nicolson time stepping. A simple Smagorinsky model, with van Driest damping near the walls, was implemented to model subgrid scale effects. Periodic boundary conditions were imposed in the streamwise and spanwise directions. The Reynolds number based on hydraulic diameter (twice the channel height) ranged from 10 000 to 40 000. Results are compar…

MeteorologyComputational MechanicsComputational fluid dynamicsLarge Eddy SimulationPipe flowPhysics::Fluid Dynamicssymbols.namesakeFluid dynamicsHydraulic diameterSettore ING-IND/19 - Impianti NucleariPhysicsbusiness.industryTurbulenceApplied MathematicsMechanical EngineeringReynolds numberFluid DynamicMechanicsHeat TransferComputer Science ApplicationsTurbulenceTransverse planeMechanics of MaterialssymbolsbusinessCFDLarge eddy simulation
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Assessing a computational fluid dynamic technique (CFD) to evaluate pressure losses in drip irrigation laterals

2005

Micro-irrigation head losses local losses CFD turbulenceSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-Forestali
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A Comparison of Direct Numerical Simulation and Turbulence Models for Liquid Metal Free Convection in Volumetrically Heated Enclosures

1999

Natural ConvectionDirect Numerical SimulationRectangular EnclosureCFDTurbulence ModelLiquid MetalSettore ING-IND/19 - Impianti NucleariInternal Heating
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Bifurcations and Histeresis of Low Prandtl Number Free Convection in Square Enclosures with Internal Heat Generation

2003

Natural ConvectionEnclosureBifurcationCFDHisteresisSettore ING-IND/19 - Impianti NucleariInternal Heating
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Low-Prandtl Number Natural Convection in Volumetrically Heated Rectangular Enclosures - II. Square Cavity, AR=1

2001

Natural ConvectionEnclosureInternal Heat GenerationCFDSettore ING-IND/19 - Impianti Nucleari
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Low-Prandtl Number Natural Convection in Volumetrically Heated Rectangular Enclosures - I. Slender Cavity, AR=4

2000

Natural ConvectionEnclosureInternal Heat GenerationCFDSettore ING-IND/19 - Impianti Nucleari
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Influence of a Magnetic Field on Liquid Metal Free Convection in a Differentially Heated Cubic Enclosure

2002

Natural ConvectionEnclosureMagnetohydrodynamicCFDLiquid MetalSettore ING-IND/19 - Impianti Nucleari
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Numerical Simulation of MHD Fully Developed Buoyant Flow at Low Pr: “Direct” vs. “Ad hoc” Treatment of the Hartmann Layers

2001

Natural ConvectionHartmann LayerMagnetohydrodynamicCFDSettore ING-IND/19 - Impianti Nucleari
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Heat Transfer in Low-Prandtl Number Free Convection from Internally Heated Rectangular Enclosures

2000

Natural ConvectionRectangular EnclosureCFDLow Prandtl Number FluidSettore ING-IND/19 - Impianti NucleariInternal Heating
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