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Vol 36 Iss. 3
Pages:
16-27
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RUS
Article

Theoretical analysis of the constrained fall of a ball in a viscous fluid

Authors:
R. B. Rozenbaum
O. M. Todes
Date submitted:
1957-09-27
Date accepted:
1957-11-05
Date published:
1958-03-07

Abstract

In a number of branches of engineering - in gravitational concentration of minerals, some processes of chemical technology and others, we meet with the constricted motion of bodies in a medium with resistance. At constricted motion conditions of streamline and resistance forces depend on such factors as body dimensions, fluid properties, proximity of neighboring bodies or vessel walls, etc.

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References

  1. Erkova L. N. Study of the phenomenon of the suspended layer. Cand. dissertation. Leningr. Lensovet Institute of Technology, 1954.
  2. Lamb G. Hydrodynamics. OGIZ, 1947.
  3. Lyashchenko P. V. Gravitational methods of enrichment. Gostoptekhizdat, 1940.
  4. Newton I. Mathematical Beginnings of Natural Philosophy, Section IX. Presumption. Per. A. N. Krylov. PH of the Naval Academy. 1915.
  5. Smirnov, N. I. and Ruban, V. L. Relative velocity of droplet motion. Journal of Physical Chemistry, 1949, Vol. 22, No. 10.
  6. Smirnov N. I. and Ruban V. L. Relative velocity of droplet motion in the transition region. JAC, 1951, vol. 24, No. 1.
  7. Smirnov, N. I. and Ruban, V. L. The velocity of droplet motion in a medium in the laminar region. JAC, 1952, vol. 25, No. 12.
  8. Smirnov N. I. and Ruban V. L. Droplet motion in a medium. JAC, 1953, vol. 26, No. 1.
  9. Arnold N. D. Phil. Mag., 1911, v. 6, no. 22, p. 755-75.
  10. Liebster H. Ann. d. Phys., 1927, no. 82, S. 541.
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  12. Stokes G. G. Cambr. Phil. Trans., 1851, No. 9.
  13. Weyssenhoff J. Ann. d. Phys., 1920, No. 62, S. 1.
  14. Wieselsberger C. Phys. J., 1922, No. 22, P. 322; No. 23, P. 222.

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