By A.D. Myshkis, V.G. Babskii, N.D. Kopachevskii, L.A. Slobozhanin, A.D. Tyuptsov, R.S. Wadhwa
We're tremendous thankful to Springer-Verlag and to Prof. Dr. W. BeiglbOck for convey ing out the English version of our publication. we're additionally grateful to Dr. R. S. Wadhwa for a professional translation. whereas getting ready the manuscript for translation, we took the chance to head in the course of the entire textual content, make invaluable amendments, complement the unique fabric with new effects, and significantly magnify the lists of references. we are hoping that this booklet will serv~ to bolster the bonds of foreign coopera tion during this box. July 1986 The authors Translator's notice the ultimate type of the bibliography features a (free) English translation of all of the Russian books and papers released within the USSR. This has been performed on the request of the authors and with the concurrence of Prof. BeiglMck. The titles usually are not continually certain, and a few of the works have already been translated into English or different eu languages. regrettably, the authors weren't capable of offer precise info in this topic. R.S. Wadhwa Preface to the Russian variation What shall I do ... With their weightlessness during this ponderous global? M. Tsvetaeva, The Poet This booklet offers with the habit of a liquid in zero-gravity or stipulations with reference to it. The surge of curiosity in zero-gravity difficulties stems from the growth attained within the box of spaceflight, the place such stipulations will be attained for lengthy classes of time.
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Additional resources for Low-Gravity Fluid Mechanics: Mathematical
Gas—solid ﬂow in pipes. In Paniculale Flow. ed. M. C. 701-742. Butterworth-Heinemann. R000, pp. Kunii, D. & Levenspiel, O. 1969. Fluidization Engineering. John Wiley & Sons. McGraw-Hill. Leva, M. 1959. Fluidimlion. Maisumoto, S. 1986. Stability analysis of Fluid of choking Vol. 4, Solids in pneumatic conveying. Gas—Solidi Flows. In En- Mechanics, Cheremisinoff, pp. Gulf Publishing Company. Reinhold Othmer, D. F. 1956. Fluidizalian. Publishing Corp. l. W.. Blake, T. R.. & Garg, S. K. 1978. A numerical beds.
Inst. Richardson. J. F. & Zaki, W. N. 1954. Sedimentation Chem. Eng. 32, 35—53. , & Tanaka, T. 1993. Discrete particle simulation ﬂuidized bed. Powder dimensional Technol. 77, 79—87. and Fluid—Particle Syslemx. Reinhold Zenz, F. A. & 0thmer, D. F. 1960. Fluidization cyclopedia Publishing Corp. and ed. N. P. 1 A of motion Averaged Equations of the motion of assembly of solid particles immersed in a Newtonian ﬂuid is provided, in principle, by solving the Navier—Stokes equation for the interstitial ﬂuid motion and the equations of linear and angular momentum for each particle, with the former being coupled to the latter by the no-slip boundary condition imposed on the surface of each particle.
26) common reduces situation of motion of the mixture for this case, where approximately the as a 6 u,- 3x; f g] whole, cm that is, the closure of quite complicated in general. m — ﬁﬁmv 2[«um % —2 mmv_ p, 6 . 11] +743n+ %)— ml_ _Ps¢Pf pW
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