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Helium flow in a confined region caused by heating under zero gravity: approaches based on molecular kinetics and mechanics of continuous media

Helium flow in an enclosure caused by sudden heating of the enclosure walls is considered. Boltzmann’s equation and complete time-dependent Navier–Stokes equations with appropriate boundary conditions are integrated numerically. It is shown that the results of calculations obtained by using these me...

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Published in:Low temperature physics (Woodbury, N.Y.) N.Y.), 1998-02, Vol.24 (2), p.94-96
Main Authors: Gorbunov, A. A., Polezhaev, V. I., Kryukov, A. P., Shishkova, I. N.
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Language:English
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container_issue 2
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container_title Low temperature physics (Woodbury, N.Y.)
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creator Gorbunov, A. A.
Polezhaev, V. I.
Kryukov, A. P.
Shishkova, I. N.
description Helium flow in an enclosure caused by sudden heating of the enclosure walls is considered. Boltzmann’s equation and complete time-dependent Navier–Stokes equations with appropriate boundary conditions are integrated numerically. It is shown that the results of calculations obtained by using these methods for a steady-state flow are close.
doi_str_mv 10.1063/1.593546
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title Helium flow in a confined region caused by heating under zero gravity: approaches based on molecular kinetics and mechanics of continuous media
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