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290 Fundamentals of Water Treatment Unit Processes: Physical, Chemical, and Biological
Myers, K. J., Reeder, M. F., Ryan, D., and Daly, G., Get a fixon Spraying Systems Co., Industrial Spray Products, Catalog 60A,
high-shear mixing, Chemical Engineering Progress,95 Spraying Systems Co., Wheaton, IL, 2010 (see also http:==
(11):33–42, November 1999. www.spray.com).
Oldshue, J. Y., Fluid Mixing Technology, McGraw-Hill, New York, Spraying Systems, A guide to optimizing in tank agitation and
1983. mixing using educators, Industrial Spray Products, Bulletin
Oldshue, J. Y. and Trussell, R. R., Design of impellers for mixing, in: 635, Catalog 70, Spraying Systems Co., Wheaton, IL, http:==
Amirtharajah, A., Clark, M. M., and Trussell, R. R. (Eds.), service.spray.com=web=register=view_lit.asp?code ¼ B635,
Mixing in Coagulation and Flocculation, American Water 2010.
Works Research Foundation, Denver, CO, 1991. Stenquist, R. J. and Kaufman, W. J., Initial mixing in coagulation
O’Melia, C. R., Coagulation in Water and Wastewater Treatment, in processes, Report to Environmental Protection Agency, EPA-
Gloyna, E. F. and W. W. Eckenfelder, Jr., Water Quality R2-72-052, Office of Research and Monitoring, Washington,
Improvement by Physical and Chemical Processes, University D.C., 1972.
of Texas Press, Austin, 1970. Sulzer ChemTech, SMV Static Mixers, Mixing and Reaction Tech-
Reed, R., Supervisor, Soldier Canyon WTP, personal communica- nology, Sclzer ChemTech, Ltd., Winterthur, Switzerland,
tion, February 8, 2002. www.sulzerchemtech.com, 2010.
Rouse, H., Elementary Mechanics of Fluids, John Wiley & Sons, Tennekes, H. and Lumely, J. L., A First Course in Turbulence, MIT
New York, 1946. Press, Cambridge, MA, 1999.
Rouse, H., and Ince, S., History of Hydraulics, Iowa Institute of Vrale, L. and Jorden, R. M., Rapid mixing in water, Journal of the
Hydraulic Research, State University of Iowa, Iowa City, IA, American Water Works Association,63(1):52–58, January
1957. 1971.
Rouse, H., (Ed.), Appel, D. W., Hubbard, P. G., Landweber, L., Wilcox, D. C., Basic Fluid Mechanics, DCW Industries Inc., La
Laursen, E. M., McKnown, Rouse, H., J. S., Siao, T. T., Cañada, CA, 1997.
Toch, A., and Yih, C. S., Advanced Mechanics of Fluids, Willcomb, J., Floc formation and mixing basin practice, Journal of
John Wiley & Sons, New York, 1959. the American Water Works Association, 24(9):1416–1441,
Rushton, J. H., The use of pilot plant mixing, Chemical Engineering September 1932.
Progress, 47(9):485–488, September 1951.
Rushton, J. H., Applications of fluid mechanics and similitude to
scale-up problems — Part I, Chemical Engineering Progress, BIBLIOGRAPHY
48(1):33–38, January 1952a.
Rushton, J. H., Applications of fluid mechanics and similitude to The papers cited here are often cited in the literature but
scale-up problems — Part II, Chemical Engineering Progress, without complete description of title and source. These papers
48(2):95–102, February 1952b. have had a prominent role in the history of the mixing and are
Rushton, J. H., How to make use of recent mixing developments, listed for the convenience of interested persons.
Chemical Engineering Progress, 50(12):587–589, December
1954. Kolmogoroff, A. N., The local structure of turbulence in incompress-
Rushton, J. H. and Oldshue, J. Y., Mixing—Present theory and ible viscous fluid for very large Reynolds numbers, Comptes
practice, Chemical Engineering Progress, 49(4):161–168, Rendus de l’Académie des Sciences, U.R.S.S., 30:301, 1941a
April 1953a. (from Batchelor, 1951, p. 192).
Rushton, J. H. and Oldshue, J. Y., Mixing—Present theory and Kolmogoroff, A. N., On degeneration of isotropic turbulence in an
practice, Chemical Engineering Progress, 49(5):267–275, incompressible viscous liquid, Comptes Rendus de l’Académie
May 1953b. des Sciences, U.R.S.S., 31:538, 1941b (from Batchelor, 1951,
Rushton, J. H., Costich, E. W., and Everett, H. J., Power character- p. 192).
istics of mixing impellers—Part I, Chemical Engineering Pro- Kolmogoroff, A. N., Dissipation of energy in locally isotropic tur-
gress, 46(8):395–404, August 1950a. bulence, Comptes Rendus de l’Académie des Sciences, U.R.S.
Rushton, J. H., Costich, E. W., and Everett, H. J., Power character- S., 32:16, 1941c (from Batchelor, 1951, p. 192).
istics of mixing impellers—Part II, Chemical Engineering Kolmogoroff, A. N., On the disintegration of drops in turbulent flow,
Progress, 46 (9):467–476, September 1950b. Doklady Akademii Nauk S.S.S.R., 66:825, 1949 (from Batch-
Saffman, P. G. and Turner, J. S., On the collision of drops in elor, 1951, p. 192).
turbulent clouds, Journal of Fluid Mechanics, 1(Part 1): von Smoluchowski, M., Drei Vortrage uber Diffusion, Brownsche
16–30, 1956. Siemens Water Technologies Corp., Water Molekular Bewegung und Koagulation von Kolloidteilchen,
Champt Chemical Induction Unit 4 Submersible F Series Physik. Z., 17:557, 1916 (from Argaman and Kaufman, 1968,
Model No. SWC3F, Product Sheet, www.siemens.com= p. 161).
stranco, 2010. Note: The siemens web site is extensive von Smoluchowski, M., Versuch einer mathematischen Theorie der
and the foregoing provides links to many Water Champt Kaogulationskinetick kolloider Lösungen, Zeitschrift für phy-
models as well as other kinds of technologies for water sikalische Chemie, 92:155, 1918 (from Argaman and
treatment. Kaufman, 1968, p. 161).
Skeat, W. O. (Ed.), Manual of British Water Engineering Practice,
3rd edn., Published for the Institution of Water Engineers,
W. Heffer & Sons Ltd., Cambridge, U.K., 1961.