Results 211 to 220 of about 69,758 (261)
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Regarding Corrections to the Stokes Force in the Knudsen Number

Russian Physics Journal, 2021
zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Gladkov, S. O., Aung, Zaw
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Effect of Reynolds Number on the Stokes Number of Cyclones

Aerosol Science and Technology, 1993
By using dimensional analysis, the Stokes number based on the cut diameter was predicted to be a function of the Reynolds number and the geometry of the cyclone. Data from various investigators were plotted versus the Reynolds number. At lower Reynolds numbers, the Stokes number decreased with increasing Reynolds number.
Thomas J. Overcamp, Steven E. Scarlett
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Reynolds number dependence of isotropic Navier-Stokes turbulence

Physical Review Letters, 1993
Reynolds number dependence of turbulence energy spectra and higher-order moments of velocity differences is explored by means of numerical integrations of the incompressible Navier-Stokes equation. The simulations have spatial resolutions up to ${512}^{3}$ and cover the range 15\ensuremath{\le}${\mathit{R}}_{\ensuremath{\lambda}}$\ensuremath{\le}200 ...
, She   +4 more
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On the instability of Stokes layers at high Reynolds numbers

Journal of Fluid Mechanics, 2003
The inviscid instability of Stokes layers is investigated. The Stokes layer is shown to support inviscid Floquet modes at sufficiently high values of the disturbance wavenumbers. Other non-Floquet modes are investigated and are shown to be the likely cause for instability in Stokes layers.
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Impaction and Particle Bounce at High Stokes Numbers

Journal of the Air Pollution Control Association, 1980
(1980). Impaction and Particle Bounce at High Stokes Numbers. Journal of the Air Pollution Control Association: Vol. 30, No. 11, pp. 1224-1227.
Michael J. Ellenbecker   +2 more
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Evaluation of the Nusselt number for a fluid sphere in Stokes flow

Physics of Fluids, 2022
The Nusselt number Nu is evaluated for an isothermal fluid sphere immersed in a Stokes flow. The dimensionless convective-diffusive conservation equation is solved asymptotically for the case where the Peclet number based on the sphere radius, ε, is small relative to unity. The Nusselt number is evaluated by integrating the derivative of the asymptotic
B. D. Shaw, C. L. Vang
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Heavy particles in incompressible flows: The large Stokes number asymptotics

Physica D: Nonlinear Phenomena, 2007
zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Bec, J., Cencini, M., Hillerbrand, R.
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Navier‐Stokes equations, Haar wavelets and Reynolds numbers

Mathematische Nachrichten, 2014
The paper deals with global solutions of Navier‐Stokes equations with infrared‐damped initial data in the context of Haar wavelets and function spaces of type where .
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