Results 181 to 190 of about 13,706 (233)
Cyclic Thermomechanical Elasto-Viscoplasticity Implementation Using User Material Interface. [PDF]
Nagode M, Oman S, Klemenc J, Šeruga D.
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Nonlinear kinematic impacts on nanofluid flow across rough surface with numerical simulation. [PDF]
Khan A +8 more
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Heat and mass transfer of micropolar fluid flow over a stretching sheet by legendre collocation method. [PDF]
Abdelgaber KM +3 more
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Prandtl number and thermoacoustic refrigerators
From kinetic gas theory, it is known that the Prandtl number for hard-sphere monatomic gases is 2/3. Lower values can be realized using gas mixtures of heavy and light monatomic gases. Prandtl numbers varying between 0.2 and 0.67 are obtained by using gas mixtures of helium–argon, helium–krypton, and helium–xenon.
Tijani, M.E.H. +2 more
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Zero-Prandtl-number convection
The zero-Prandtl-number limit of the Oberbeck—Boussinesq equations is compared to small-Prandtl-number Rayleigh—Bénard convection through numerical simulations. Both no-slip and free-slip boundary conditions, imposed at the top and bottom of a small-aspect-ratio, horizontally periodic box are considered.
Boeck, Thomas, Thess, André
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Physics of the Earth and Planetary Interiors, 2013
Abstract This article investigates the dependence of hydromagnetic dynamos on the magnetic Prandtl number at low Prandtl number. In all the investigated cases, the generated magnetic fields are dipolar and neither transition to hemispherical dynamos nor weaker magnetic fields (which are less dipole dominated) were observed, although the inertia ...
Jan Šimkanin, P Hejda
exaly +2 more sources
Abstract This article investigates the dependence of hydromagnetic dynamos on the magnetic Prandtl number at low Prandtl number. In all the investigated cases, the generated magnetic fields are dipolar and neither transition to hemispherical dynamos nor weaker magnetic fields (which are less dipole dominated) were observed, although the inertia ...
Jan Šimkanin, P Hejda
exaly +2 more sources
A Model for Eddy Conductivity and Turbulent Prandtl Number
This paper presents a model for eddy conductivity and turbulent Prandtl number based on the considerations of a Stokes-type flow. The expressions obtained by the model provide continuous velocity and temperature distributions for turbulent flows and are ...
T. Cebeci
exaly +2 more sources
On the Influence of the Molecular Prandtl Number on the Turbulent Prandtl Number
1979Much more work has been done on the problem of turbulent transfer of momentum in a shear flow than on the problem of turbulent heat transfer. One of the reasons is obviously the fact, that from an experimental point of view informations about velocity-velocity correlations are easier to obtain compared with temperature-velocity correlations.
M. Jischa, H. B. Rieke
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