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- W2128523923 abstract "AIChE JournalVolume 33, Issue 11 p. 1903-1907 R & D Note Application of geometric inversion to the eccentric annulus system Canan Özgen, Canan Özgen Department of Chemical Engineering, Middle East Technical University, Ankara 06531, TurkeySearch for more papers by this authorIsmail Tosun, Corresponding Author Ismail Tosun Department of Chemical Engineering, Middle East Technical University, Ankara 06531, TurkeyDepartment of Chemical Engineering, Middle East Technical University, Ankara 06531, TurkeySearch for more papers by this author Canan Özgen, Canan Özgen Department of Chemical Engineering, Middle East Technical University, Ankara 06531, TurkeySearch for more papers by this authorIsmail Tosun, Corresponding Author Ismail Tosun Department of Chemical Engineering, Middle East Technical University, Ankara 06531, TurkeyDepartment of Chemical Engineering, Middle East Technical University, Ankara 06531, TurkeySearch for more papers by this author First published: November 1987 https://doi.org/10.1002/aic.690331119Citations: 7AboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onEmailFacebookTwitterLinkedInRedditWechat Literature Cited Bird, R. B., W. E., Stewart, and E. N. Lightfoot, Transport Phenomena, Wiley, New York (1960). Cheng, K. C., and G. J., Hwang, “Laminar Forced Convection in Eccentric Annuli,” AIChE J., 14, 510 (1968). Eves, H., A Survey of Geometry, rev. ed., Allyn and Bacon, Boston (1972). Heyda, J. F., General Electric Co. Rept. APEX-391 (1958). Heyda, J. F., “A Green's Function Solution for the Case of Laminar Incompressible flow Between Non-Concentric Circular Cylinders,” J. Franklin Inst., 267, 25 (1959). Jonsson, V. K., and E. M., Sparrow, “Experiments on Turbulent-Flow Phenomena in Eccentric Annular Ducts,” J. Fluid Mech., 25, 65 (1966). Knudsen, J. G., and D. L., Katz, Fluid Dynamics and Heat Transfer, McGraw-Hill, New York (1958). Nickel, J. A., “Bipolar Harmonics on a Circular Drum,” Math. Modelling, 1, 369 (1980). Piercy, N. A. V., M. S., Hooper, and H. F. Winny, “Viscous Flow Through Pipes with Cores,” Phil. Mag., Ser. 7, 15, 647 (1933). Prusa, J., and L. S., Yao, “Natural Convection Heat Transfer between Eccentric Horizontal Cylinders,” J. Heat Trans., 105, 108 (1983). Rothfus, R. R., C. C., Monrad, and V. E. Senecal, “Velocity Distribution and Fluid Friction in Smooth Concentric Annuli,” Ind. Eng. Chem., 42, 2511 (1950). Rothfus, R. R., C. C., Monrad, K. G. Sikchi, and W. J. Heideger, “Isothermal Skin Friction in Smooth Concentric Annuli,” Ind. Eng. Chem., 47, 913 (1955). Snyder, W. T., and G. A., Goldstein, “An Analysis of Fully Developed Laminar Flow in an Eccentric Annulus,” AIChE J., 11, 462 (1965). Trombetta, M. L., “Laminar Forced Convection in Eccentric Annuli,” Int. J. Heat Mass Trans., 14, 1161 (1971). Usui, H., and K., Tsuruta, “Analysis of Fully Developed Turbulent Flow in an Eccentric Annulus,” J. Chem. Eng. Japan, 13, 445 (1980). Walker, J. E., G. A., Whan, and R. R. Rothfus, “Fluid Friction in Non-circular Ducts,” AIChE J., 3, 485 (1957). Wolffe, R. A., and C. W., Clump, “The Maximum Velocity Locus for Axial Turbulent Flow in an Eccentric Annulus,” AIChE J., 9, 424 (1963). Yao, L. S., “Analysis of Heat Transfer in Slightly Eccentric Annuli,” J. Heat Transfer, 102, 279 (1980). Citing Literature Volume33, Issue11November 1987Pages 1903-1907 ReferencesRelatedInformation" @default.
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