Search Results - "\(k\)-\(\varepsilon\) modeling in turbulence"
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1
Authors:
Source: Acta Mechanica. 235:7351-7368
Subject Terms: liquid sloshing, kernel truncation-based instability, non-penetration algorithm, \(k\)-\(\varepsilon\) modeling in turbulence, solitary wave propagation, Navier-Stokes equations for incompressible viscous fluids, virtual particle, dam break problem, k-epsilon turbulence model, Particle methods and lattice-gas methods, incompressible Navier-Stokes Reynolds-averaged equations
File Description: application/xml
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2
Authors: et al.
Source: European Journal of Mechanics - B/Fluids. 101:219-226
Subject Terms: k-omega shear stress transport model, \(k\)-\(\varepsilon\) modeling in turbulence, Reynolds-averaged Navier-Stokes equations, laminar separation, Navier-Stokes equations for incompressible viscous fluids, lift-to-drag ratio, finite volume method, Finite volume methods applied to problems in fluid mechanics, SIMPLEC iterative algorithm, SD7003 hydrofoil
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3
Authors:
Source: Applied Mathematics and Mechanics. 44:289-306
Subject Terms: structural ensemble dynamics, Wilcox \(k\)-\(\omega\) model, \(k\)-\(\varepsilon\) modeling in turbulence, Symmetry analysis, Lie group and Lie algebra methods applied to problems in fluid mechanics, 4. Education, turbulent pipe flow, generalized dilation invariance principle, 0103 physical sciences, Fluid Dynamics (physics.flu-dyn), FOS: Physical sciences, Physics - Fluid Dynamics, Shear flows and turbulence, 01 natural sciences
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4
Authors:
Source: Journal of Scientific Computing. 98
Subject Terms: Compressible Navier-Stokes equations, Reynolds-averaged compressible Navier-Stokes equations, wing-body configuration, Navier–Stokes equations Two-equation turbulence models Solution algorithms, \(k\)-\(\varepsilon\) modeling in turbulence, Transonic flows, finite volume method, Finite volume methods applied to problems in fluid mechanics, transonic flow, 01 natural sciences, k-omega model, Compressibility effects in turbulence, transport equation, 0103 physical sciences
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5
Authors: et al.
Source: European Journal of Mechanics - B/Fluids. 84:233-249
Subject Terms: lift, cavitating flow, Liquid-gas two-phase flows, bubbly flows, \(k\)-\(\varepsilon\) modeling in turbulence, partially averaged Navier-Stokes turbulence model, 0103 physical sciences, Basic methods in fluid mechanics, Diffusive and convective heat and mass transfer, heat flow, force element analysis, enstrophy, drag force, 01 natural sciences, energy
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6
Authors: et al.
Source: Computers & Fluids. 179:613-631
Subject Terms: immersed-body method, URANS \(k-\varepsilon\) model, \(k\)-\(\varepsilon\) modeling in turbulence, Navier-Stokes equations for incompressible viscous fluids, 0103 physical sciences, fluid-structure interaction, Finite element, Rayleigh-Ritz and Galerkin methods for initial value and initial-boundary value problems involving PDEs, finite-discrete element method, 01 natural sciences, Fluid-solid interactions (including aero- and hydro-elasticity, porosity, etc.), Finite element methods applied to problems in fluid mechanics, wall function
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7
Authors: et al.
Contributors: et al.
Source: International Journal for Numerical Methods in Fluids. 40:1527-1538
Subject Terms: \(k\)-\(\varepsilon\) modeling in turbulence, Navier-Stokes equations for incompressible viscous fluids, turbulence, Shear flows and turbulence, Navier-Stokes equations, 0101 mathematics, buoyancy driven air flow, 01 natural sciences, Finite element methods applied to problems in fluid mechanics
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8
Authors:
Source: International Journal of Numerical Methods for Heat & Fluid Flow. 11:286-307
Subject Terms: staggered-grid finite volume spatial discretization, Accurate and efficient solutions, K-ω turbulence-model, Rans, Unsteady flows, Vorticity-velocity formulation, \(k\)-\(\varepsilon\) modeling in turbulence, Flow, unsteady computation, viscous flows, Navier-Stokes equations for incompressible viscous fluids, incompressible Natier-Stokes equations, vorticity transport, Finite volume methods applied to problems in fluid mechanics, Roe's flux difference splitting, 02 engineering and technology, 01 natural sciences, compressible Reynolds-averaged Navier-Stokes equations, variable time stepping, vorticity-velocity formulation, multigrid Runge-Kutta iteration, impicit residual smoothing, 0203 mechanical engineering, Compressibility effects in turbulence, turbulent unsteady cascade flow, 0103 physical sciences, multigrid line-Gauss-Seidel relaxation
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9
Authors:
Source: Iacovides, H & Nikas, K S 2001, The computation of flow and heat transfer through square-ended U-bends, using low-Reynolds-number models. in 2nd International Symposium on Turbulent Shear Flow Phenomena, Stockholm, Sweden. 2nd International Symposium on Turbulent Shear Flow Phenomena, Stockholm, Sweden, 1/01/24.
Subject Terms: \(k\)-\(\varepsilon\) modeling in turbulence, 0103 physical sciences, Heat and mass transfer, heat flow, Finite volume methods applied to problems in fluid mechanics, 01 natural sciences
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Access URL: https://zbmath.org/2247738
https://doi.org/10.1108/09615530410517977
https://research.manchester.ac.uk/en/publications/f5a766ea-2988-4976-9ac7-dd751242dfa5
http://www.emeraldinsight.com/doi/citedby/10.1108/09615530410517977
https://core.ac.uk/display/38442047
https://www.escholar.manchester.ac.uk/uk-ac-man-scw:1e1011
https://www.emerald.com/insight/content/doi/10.1108/09615530410517977/full/html -
10
Authors:
Source: European Journal of Mechanics - B/Fluids. 42:142-158
Subject Terms: partial enclosures, Grashof number, \(k\)-\(\varepsilon\) modeling in turbulence, ceiling vents, Direct numerical and large eddy simulation of turbulence, 0211 other engineering and technologies, 0202 electrical engineering, electronic engineering, information engineering, thermal plume, 02 engineering and technology
File Description: application/xml; PDF; application/pdf
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11
Authors: Ashraf Balabel
Source: Applied Mathematical Modelling. 36:3593-3611
Subject Terms: two-phase flow, nonlinear turbulence modeling, Liquid-gas two-phase flows, bubbly flows, \(k\)-\(\varepsilon\) modeling in turbulence, Modelling and Simulation, Applied Mathematics, Navier-Stokes equations for incompressible viscous fluids, numerical methods, 0103 physical sciences, interfacial instability, level set method, 01 natural sciences
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12
Authors:
Source: International Journal of Heat and Mass Transfer. 54:5030-5038
Subject Terms: FEM software FIDAP, \(k\)-\(\varepsilon\) modeling in turbulence, Navier-Stokes equations for incompressible viscous fluids, Numerical computation of solutions to systems of equations, emissions, 0211 other engineering and technologies, Combustion, 02 engineering and technology, equilibrium, 7. Clean energy, numerical, Symmetry analysis, Lie group and Lie algebra methods applied to problems in fluid mechanics, swirl burners, 0202 electrical engineering, electronic engineering, information engineering, Newton-Raphson, Chemically reacting flows, NO\(_{x}\)
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13
Authors: Dominique Pelletier
Source: International Journal for Numerical Methods in Fluids. 31:189-202
Subject Terms: Research exposition (monographs, survey articles) pertaining to fluid mechanics, \(k\)-\(\varepsilon\) modeling in turbulence, complex flow, adaptive finite element techniques, steady-state two-dimensional flow, grid-independent solutions, Finite element methods applied to problems in fluid mechanics
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Access URL: http://ui.adsabs.harvard.edu/abs/1999IJNMF..31..189P/abstract
https://publications.polymtl.ca/28693/
https://doi.org/10.1002/(sici)1097-0363(19990915)31:1<189::aid-fld963>3.0.co;2-f -
14
Authors:
Source: Communications in Nonlinear Science and Numerical Simulation. 4:20-24
Subject Terms: turbulent flow, 0301 basic medicine, 0303 health sciences, 03 medical and health sciences, \(k\)-\(\varepsilon\) modeling in turbulence, numerical simulation, Gravity current, Numerical simulation, PDEs in connection with fluid mechanics, Turbulent flow, gravity current
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15
Authors: Paul G. Tucker
Source: Engineering Turbulence Modelling and Experiments 4 ISBN: 9780080433288
Subject Terms: multilevel schemes, nonlinear eddy viscosity models, Turbulent transport, mixing, \(k\)-\(\varepsilon\) modeling in turbulence, 4. Education, wall distance algorithm, modified Poisson equation, turbulent oscillatory isothermal flow, zonal models, multilevel convergence, Finite difference methods applied to problems in fluid mechanics
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Access URL: https://zbmath.org/1508293
https://doi.org/10.1002/1097-0363(20000730)33:6<869::aid-fld36>3.0.co;2-e
http://onlinelibrary.wiley.com/doi/10.1002/1097-0363(20000730)33:6%3C869::AID-FLD36%3E3.0.CO;2-E/references
https://www.sciencedirect.com/science/article/pii/B978008043328850028X
http://ui.adsabs.harvard.edu/abs/2000IJNMF..33..869T/abstract
http://publications.eng.cam.ac.uk/336302/ -
16
Authors: et al.
Source: Raisee, M, Jafari, A, Babaei, H & Iacovides, H 2010, 'Two-dimensional prediction of time dependent, turbulent flow around a square cylinder confined in a channel', International Journal for Numerical Methods in Fluids, vol. 62, no. 11, pp. 1232-1263. https://doi.org/10.1002/fld.2065
Subject Terms: turbulence modeling, square cylinder, 13. Climate action, \(k\)-\(\varepsilon\) modeling in turbulence, 4. Education, 0103 physical sciences, Square cylinder, vortex shedding, eddy-viscosity model, Vortex shedding, 01 natural sciences, Eddy-viscosity model, Turbulence modeling
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Access URL: https://onlinelibrary.wiley.com/doi/abs/10.1002/fld.2065
https://onlinelibrary.wiley.com/doi/10.1002/fld.2065/abstract
https://www.research.manchester.ac.uk/portal/en/publications/twodimensional-prediction-of-time-dependent-turbulent-flow-around-a-square-cylinder-confined-in-a-channel(515fd3a0-9a16-45a2-ab0a-e02612e4a5f7).html
https://www.escholar.manchester.ac.uk/uk-ac-man-scw:109270 -
17
Authors:
Source: Flow, Turbulence and Combustion. 84:1-23
Subject Terms: \(k\)-\(\varepsilon\) modeling in turbulence, non-adiabatic flamelet model, radiation modelling, 0103 physical sciences, Combustion, CFD combustion modelling, industrial flame, 01 natural sciences, 7. Clean energy, NO modelling
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18
Authors:
Source: Applied Mathematical Modelling. 31:2655-2667
Subject Terms: turbulence models, \(k\)-\(\varepsilon\) modeling in turbulence, Turbulent boundary layers, Modelling and Simulation, Applied Mathematics, Supersonic flows, surface roughness, 0103 physical sciences, \(k\)-\(\omega\) and stress-\(\omega \) models, supersonic boundary layer flow, 01 natural sciences
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19
Authors:
Source: Communications in Nonlinear Science and Numerical Simulation. 11:391-412
Subject Terms: near wake, \(k\)-\(\varepsilon\) modeling in turbulence, 0211 other engineering and technologies, 0202 electrical engineering, electronic engineering, information engineering, coherent structure, vortex shedding, 02 engineering and technology, Wakes and jets, Viscous vortex flows, bluff body
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20
Authors: et al.
Source: Communications in Nonlinear Science and Numerical Simulation. 11:440-451
Subject Terms: \(k\)-\(\varepsilon\) modeling in turbulence, staggered grid, 0211 other engineering and technologies, 0202 electrical engineering, electronic engineering, information engineering, burn-out ratio, decomposition ratio, finite volume method, Dusty-gas two-phase flows, Finite volume methods applied to problems in fluid mechanics, 02 engineering and technology, 7. Clean energy
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