Search Results - "Eriklintsev, I. V."

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  1. 1

    Numerical simulation of countercurrent flow and diffusion processes in a separating gas centrifuge by Kozlov, S A, Eriklintsev, I V

    Published in Physica scripta (01-07-2013)
    “…We present a linear model for the numerical simulation of antisymmetric countercurrent flow in a gas centrifuge which has high computation speeds. A model…”
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    Journal Article
  2. 2

    Bifurcation Model of Laminar-Turbulent Transitions Near Flat Walls by Troshkin, O. V., Kozlov, S. A., Fortova, S. V., Shepelev, V. V., Eriklintsev, I. V.

    “…In this article, we describe a new mathematical model (bifurcational turbulence model) and justify its suitability for the prediction of laminar and turbulent…”
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    Journal Article
  3. 3

    Bifurcation model of the laminar-turbulent transition in simple flows by Eriklintsev, I. V., Kozlov, S. A.

    “…For plane channel flows with a constant pressure gradient and for constant-pressure shear layer flows, a simple closure scheme for the Reynolds-averaged…”
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    Journal Article
  4. 4

    Numerical simulation of a high-speed collision of metal plates by Belotserkovsky, O. M., Fortova, S. V., Troshkin, O. V., Pronina, A. P., Eriklintsev, I. V., Kozlov, S. A.

    “…By means of single-, double-, and three-dimensional simulation, the dynamic processes occurring at a high speed impact of two metal plates of different…”
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    Journal Article
  5. 5

    On the short-wave nature of Richtmyer–Meshkov instability by Belotserkovskaya, M. S., Belotserkovskii, O. M., Denisenko, V. V., Eriklintsev, I. V., Kozlov, S. A., Oparina, E. I., Troshkin, O. V.

    “…In the case of a variable period (wavelength) of a perturbed interface, the instability and stability of Richtmyer–Meshkov vortices in perfect gas and…”
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  6. 6

    On the development of a wake vortex in inviscid flow by Belotserkovskii, O. M., Belotserkovskaya, M. S., Denisenko, V. V., Eriklintsev, I. V., Kozlov, S. A., Oparina, E. I., Troshkin, O. V., Fortova, S. V.

    “…The evolution of an initial perturbation in an axisymmetric subsonic normal inviscid gas flow through a pipe is directly simulated. The basic (unperturbed)…”
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  7. 7

    On the theory of countercurrent flow in a rotating viscous heat-conducting gas by Belotserkovskii, O. M., Betelin, V. B., Borisevich, V. D., Denisenko, V. V., Eriklintsev, I. V., Kozlov, S. A., Konyukhov, A. V., Oparin, A. M., Troshkin, O. V.

    “…The countercurrent flow in a gas centrifuge is simulated. Mechanical and thermal methods for its excitation are discussed; thermal restructuring, the thermal…”
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