Theory of Dispersed Multiphase Flow. Proceedings of an by Richard E. Meyer

By Richard E. Meyer

From environmental crisis with dilute suspensions of excellent debris within the surroundings, from chemical engineering curiosity within the dealing with of long-chain polymer resolution, from the final of hydro-power stations through agglomeration of ice crystals in rivers to the regulate of chemical reactions in particle suspensions carried via a fluid circulation and to the circulate of grain in silos, and of concerns that impinge on our day-by-day lives and urged clinical enquiry into the habit of the fluids into which ingredients of other section are finely combined. it's a topic during which learn has quickened long ago decade, and this quantity collects the articles of fifteen top individuals who got here jointly in could 1982, to provide an updated, authoritative survey of the sphere and a few of its functions

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By Richard E. Meyer

From environmental crisis with dilute suspensions of excellent debris within the surroundings, from chemical engineering curiosity within the dealing with of long-chain polymer resolution, from the final of hydro-power stations through agglomeration of ice crystals in rivers to the regulate of chemical reactions in particle suspensions carried via a fluid circulation and to the circulate of grain in silos, and of concerns that impinge on our day-by-day lives and urged clinical enquiry into the habit of the fluids into which ingredients of other section are finely combined. it's a topic during which learn has quickened long ago decade, and this quantity collects the articles of fifteen top individuals who got here jointly in could 1982, to provide an updated, authoritative survey of the sphere and a few of its functions

Show description

Read or Download Theory of Dispersed Multiphase Flow. Proceedings of an Advanced Seminar, Conducted by the Mathematics Research Center, the University of Wisconsin–Madison, May 26–28, 1982 PDF

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Extra info for Theory of Dispersed Multiphase Flow. Proceedings of an Advanced Seminar, Conducted by the Mathematics Research Center, the University of Wisconsin–Madison, May 26–28, 1982

Example text

Suûstitution of the n^ into Poisson's equation then yields Interactions between Particles on the Rheology of Dispersions 2 ' 2 ' V ψ = K ψ - p 2 2 er z- y. K^ With p ekT 0 27 0/ε 2n ° -a ei*ä (33) l-φ a ' Note that the mean potential <ψ> proves irrelevant and that no statement was needed about the microstructure. PQ represents a uniform distribution of counterions throughout the fluid. Tne modified ionic strength appearing in κ2 accounts for counterions [46,47] plus the reduction in the fluid volume due to the presence of solid particles.

M. Chaikin J. Chem. Phys. 76 3774 (1982). 48. D. W. Benzing and W. B. Rüssel J. Coll. Inter. Sci. 83 49. S. Mitaku, T. Ohtsuki, K. Okano, et al. Jap. J. Appi. 163-178 (1981). Pnys. 17 305 (1978); JL7_ 627 (1978); _li 4 39 (1980); _20_ 509, (1981). 50. A. B. Glendinning and W. B. Rüssel J^_ Coll. Inter. Sci. 51. M. Doi "Rheology of Concentrated Macromolecular Solu­ (submitted 1982). tions" in Advanced Seminar on the Theory of Dispersed Multiphase Flow, The Mathematics Research Center, Uni­ versity of Wisconsin, Madison, 1982, p.

Sci. 6 173 (1976). D. J. Jeffrey and A. Acrivos AIChE J. 22 417 (1976). J. D. M. Archives 2 40 3 (1977). J. Mewis J. Non-Newt. Fluid Mech. 6 1 (1979). D. J. Evans and R. O. Watts Chem. Phys. 48 321 (1980). E. J. Hinch and L. G. Leal J. Fluid Mech. 52 683 (1972). D. H. Napper J. Coll. Inter. Sci. 58 390 (1977). I. M. Krieger Adv. Coll. Inter. Sci. 3 111 (1972). S. J. Willey and C. W. Macosko J. Rheol. 22 525 (1978). T. A. Strivens J. Coll. Inter. Sci. 57 476 (1976). I. Wagstaff and C. E. Chaffey J.

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