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MHD from a Microscopic Concept and Onset of Turbulence in Hartmann Flow
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作者 l.jirkovsky L.Ma.Bo-ot C.M.Chiang 《Communications in Theoretical Physics》 SCIE CAS CSCD 2010年第3期579-583,共5页
We derive higher order magneto-hydrodynamic (MHD) equations from a microscopic picture using pro-jection and perturbation formalism. In an application to Hartmann flow we find velocity profiles flattening towards th... We derive higher order magneto-hydrodynamic (MHD) equations from a microscopic picture using pro-jection and perturbation formalism. In an application to Hartmann flow we find velocity profiles flattening towards the center at the onset of turbulence in hydrodynamic limit. Comparison with the system under the effect of a uniform magnetic field yields difference in the onset of turbulence consistent with observations, showing that the presence of magnetic field inhibits onset of instability or turbulence. The laminar-turbulent transition is demonstrated in a phase transition plot of the development in time of the relative average velocities vs. Reynolds number showing a sharp increase of the relative average velocity at the transition point as determined by the critical Reynolds number. 展开更多
关键词 projection techniques onset of turbulence MHD Hartmann flow
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Pipe Flow and Wall Turbulence Using a Modified Navier-Stokes Equation
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作者 l.jirkovsky A.Muriel 《Communications in Theoretical Physics》 SCIE CAS CSCD 2012年第3期477-481,共5页
We use a derived incompressible modified Navier-Stokes equation to model pipe flow and wall turbulence. We reproduce the observed flattened paraboloid velocity profiles of turbulence that cannot be obtained directly u... We use a derived incompressible modified Navier-Stokes equation to model pipe flow and wall turbulence. We reproduce the observed flattened paraboloid velocity profiles of turbulence that cannot be obtained directly using standard incompressible Navier-Stokes equation. The solutions found are in harmony with multi-valued velocity fields as a definition of turbulence. Repeating the procedure for the flow of turbulent fluid between two parallel flat plates we find similar flattened velocity profiles. We extend the analysis to the turbulent flow along a single wall and compare the results with experimental data and the established controversial yon Karman logarithmic law of the wall. 展开更多
关键词 FLUIDS INSTABILITIES TURBULENCE deterministic chaos
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