Continuum equations in the dynamics of rarefied gases

Author:

Krook Max

Abstract

A procedure is given for translating boundary-value problems of gas dynamics from microscopic form into approximately equivalent continuum form. The continuum formulations involve state-variables that are either half-space moments, or complete moments of the molecular distribution functions. Moment equations derived from the kinetic equations are reduced to a determinate set by representing the distribution functions as sums of ‘modified Maxwellian functions based on various characteristic temperatures and velocities’. The particular choice of such a representation depends on the Knudsen number and on the nature of the microscopic boundary conditions.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference8 articles.

1. Chapman, S. & Cowling, T. G. 1939 Mathematical Theory of Non-uniform Gases .Cambridge University Press.

2. Bhatnagar, P. L. , Gross, E. P. & Krook, M. 1954 Phys. Rev. 94,511.

3. Gross, E. P. , Jackson, E. A. & Ziering, S. 1957 Ann. Phys. 1,141.

4. Grad, H. 1949 Communs. Pure Appl. Math. 2,331.

5. Krook, M. 1955b Phys. Rev. 99,1896.

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