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Condenser,” AIChE Heat Transfer Sym. Series, V. 69, No. 51. Gilmour, C. H., “Shortcut to Heat Exchanger Design-VII,”
131, p. 18, (1973). Chem. Eng., p. 199, Aug. (1954).
30. Colburn, A. P., Trans AIChE, V. 30, p. 187 (1934) and “Design 52. Gilmour, C. H., “Nucleate Boiling—A Correlation,” Chem.
of Cooler Condensers for Mixtures of Vapors with Noncon- Eng. Prog., V. 54, No. 10, p. 77 (1958).
densing Gases,” Ind. Eng. Chem., V. 26, No. 11, p. 1178 (1934). 53. Gilmour, C. H., “Performance of Vaporizers, Heat Transfer
31. Colburn, A. P. and O. A. Hougen, University of Wisconsin Analysis of Plant Data” presented at Second National Heat
Eng. Expt. Station, Bul. 70 (1930) and Ind. Eng. Chem., V. 26, Transfer Conference, Aug. 1958, Chicago, IL. Preprint No.
p. 1178 (1934). 33, AIChE, New York 36, N.Y., pub. Chem Eng. Prog., Sym.
32. Collins, G. F. and R. T. Matthews, “Climatic Considerations in Series No. 29, V. 55 (1959).
the Design of Air-Cooled Heat Exchangers,” Heat Transfer 54. Gilmour, C. H., private communication, Jan. (1959).
Div. Paper No. 59-A-255, ASME, presented at annual meeting 55. Glausser, W. E. and J. A. Cortright, “Design Features in Heat
Atlantic City, N.J. (1959). Exchangers,” ASME annual meeting, Nov. (1954).
33. Cook, E. M. and P. S. Otten, “Air-Cooled Heat Exchangers,” 56. Greve, F. W., Bul. 32, Purdue Engineering Experiment Sta-
Oil and Gas Jour., p. 107, June 2, (1958). tion, (1928).
34. Devore, A. “How to Design Multitube Condensers,” Pet. Ref., 57. Grimison, E. D., “Correlation and Utilization of New Data on
V. 38, No. 6, p. 205 (1959). How Resistance and Heat Transfer for Cross Flow of Gases
35. Diehl, J. E. and C. R. Koppany, “Flooding Velocity Correlation over Tube Banks,” Trans. ASME, V. 59, p. 583 (1937).
for Gas-Liquid Counterflow in Vertical Tubes,” Chem. Eng. 58. Grimison, E. D., “Correlation and Utilization of New Data on
Sym. Heat Transfer (Philadelphia), V. 65, No. 92, p. 77 How Resistance and Heat Transfer for Cross Flow of Gases
(1968). over Tube Banks,” Trans. ASME, V. 60, p. 381 (1938).
36. Donohue, D. A., “Heat Transfer and Pressure Drop in Heat 59. Gulley, D. L., “How to Calculate Weighted MTDs,” Heat
Exchangers,” Ind. Eng. Chem., V. 41, p. 2499 (1949). Exchanger Design Book, Gulf Publishing Company, p. 13 (1968).
37. Donohue, D. A., “Heat Exchangers,” Petroleum Processing, p. 60. Hajek, J. D., private communication, correlation data to be
102, March (1956). published, (1963).
38. Donohue, D. A., “Heat Exchanger Design,” Pet. Ref., V. 34, 61. “Heat Exchangers” Manual No. 700-A, The Patterson-Kelley
Part 1, No. 8, p. 94 (1955); Part 2, No. 10, p. 129 (1955); Co., Inc., East Stroudsburg, PA.
Part 3, No. 11, p. 75 (1955); Part 4, V. 35, No. 1, p. 155 62. Henderson, C. L. and J. M. Marchello, “Film Condensation in
(1956). the Presence of a Non-Condensable Gas,” Trans. ASME, Jour-
39. Dmytryszyn, M., “Condensation of a Condensable Vapor in nal Heat Transfer, V. 91, p. 44, Aug. (1969).
the Presence of a Non-Condensable Gas,” a thesis, Washing- 63. Homer, C. H., Jr. and S. Kopp, “Air-Cooled Heat Exchangers,”
ton University, Sever Inst. of Technology, St. Louis, MO Pet. Engr., V. 26, p. 27, April (1954).
(1957). 64. Hsu, Y. Y. and J. W. Westwater, “Film Boiling from Vertical
40. Eckert, E. R. G., “Introduction to the Transfer of Heat and Tubes,” Paper No. 57-HT-24, ASME—AIChE Joint Heat Trans-
Mass,” p. 115, McGraw-Hill Book Co., New York (1950). fer Conference, State College, PA., Aug. (1957)
41. “Engineering Data Book,” Section 2, Wolverine Tube Div. of 65. Hughmark, G. A., “Designing Thermosiphon Reboilers,”
Calumet and Hecla, Inc., Detroit, MI. Chem. Eng. Prog., V. 57, No. 7, p. 43 (1961).
42. English, K. G., W. T. Jones, R. C. Spillers, and V. Orr, “Flood- 66. Hughmark, G. A., “Designing Thermosiphon Reboilers,”
ing in a Vertical Up-Draft Partial Condenser,” Chem. Eng. Chem. Eng. Prog., V. 60, No. 7, p. 59 (1964).
Prog., V. 59, No. 7, p. 51 (1963). 67. Hughmark, G. A., “Designing Thermosiphon Reboilers,”
43. Fabregas, J. A., “Electronic Computer Rates Heat Exchangers, Chem. Eng. Prog., V. 65, No. 7, p. 67 (1969).
Alco Products Review,” Alco Products, Inc., 30 Church St., 68. Hulden, B., “Condensation of Vapours from Gas-Vapour Mix-
New York, N.Y., Fall 1956 tures. An Approximate Method of Design,” Chem. Eng. Science,
44. Fair, J. R. and H. F. Rase, “Overall Heat Transfer Coefficients,” V. 7, p. 60 (1957).
Pet. Ref., V. 33, No. 7, p. 121 (1954). 69. Katz. D. L., J. E. Myers, E. H. Young, and G. Balekjian, “Boiling-
45. Fair, J. R. “What You Need to Design Thermosiphon Reboil- Outside Finned Tubes,” Pet. Ref., V. 34, No. 2, p. 113 (1955).
st
ers,” Pet. Ref., V. 39, No. 2, p. 105 (1960). 70. Kern, D. Q., Process Heat Transfer, 1 Ed., McGraw-Hill Book
46. Fair, J. R., “Vaporizer and Reboiler Design,” Chem. Eng., Part Co., Inc., New York, N.Y. (1950).
1, p. 119, July 8, (1963) and Part 2, p. 101, Aug. 5, (1963). 71. Kern, D. Q. and R. E. Seaton, “A Theoretical Analysis of Ther-
47. Frank, O. and R. D. Prickett, “Designing Vertical Ther- mal Surface Fouling,” British Chem. Eng., V. 4, p. 258, June
mosiphon Reboilers,” Chem. Eng., p. 107, Sept. 3, (1973). 1959. See also, Chem. Eng., V. 66, p. 125, Aug. 10, (1959).
48. Franks, R. G. E. and N. G. O’Brien, “Application of a General 72. Kern. D. Q. and R. E. Seaton, “Optimum Trim Cooler Tem-
Purpose Analog Computer in the Design of a Cooler-Con- perature,” Chem. Eng. Prog., V. 55, No. 7, p. 69 (1959).
denser,” Chem. Eng. Progr., Sym. Series 56, No. 31, pp. 37—41 73. Kern, R., “How To Design Heat Exchanger Piping,” Pet. Ref.,
(1960). V. 39, No. 2, p. 137 (1960).
49. Furman, T., “Heating and Cooling Inside Tubes,” British 74. Lauer, B. E., “Heat Transfer Calculations,” Oil and Gas Jour.
Chem. Eng., p. 262, May (1958). (1953).
50. Gardner, K. A. and T. C. Carnavas, “Thermal-Contact Resis- 75. Lee, D. C., J. W. Dorsey, G. Z. Moore, and F. D. Mayfield,
tance to Finned Tubing,” Trans. of ASME Jour. of Heat Transfer, “Design Data for Thermosiphon Reboilers,” Chem. Eng. Prog.,
Paper No. 59-A-135. V. 52, No. 4, p. 160 (1956).

