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Drying Technology
An International Journal
Volume 35, 2017 - Issue 3
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Original Articles

A mathematical model of heat and mass transfer in Yankee drying of tissue

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References

  • Brauns, O.; Jansson, A.L. Heat transmission in the drying of paper on a Yankee cylinder. Svensk Papperstidning 1957, 60(17), 621–631.
  • Sundberg, T.; Andersson, N.; Löfgren, K.; Österberg, L. Heat transfer in MG drying. Svensk Papperstidning 1968, 71(8), 317–324.
  • Zabel, L.W. The application of an analog computer to a paper manufacturing problem. Tappi 1959, 42(8), 687–690.
  • Spraker, W.; Wallis, G.; Yaros, B. Analysis of heat and mass transfer in the Yankee dryer. Pulp and Paper Magazine Canada 1969, 70(1), 55.
  • Soininen, M. A mathematical model for a Yankee hood. Drying Technology 1985, 3(2), 153–170.
  • Toivonen, K. Yankee drying of soft tissue paper. Svensk Papperstidning 1982, 85(12), R107–R114.
  • Karlsson, M.; Heikkilä, P. Computer simulation of Yankee drying. In Drying’87: Proceedings of the 5th International Drying Symposium; Mujumdar, A.S., Ed.; Hemisphere Publ. Corp.: Washington, DC, 1987; 194–202.
  • Ahrens, F.W. Effect of shell thermal dynamics on predictions of a Yankee dryer model. In Proceedings of ASME Heat Transfer Division; American Society of Mechanical Engineers (ASME): New York, 1995; 427–436.
  • Ahrens, F.W.; Parker, P.E. Analysis of the effects of basis weight and moisture nonuniformity on Yankee dryer performance. In Proceedings of the Process and Product Quality Conference and Trade Fair, Anaheim, CA; Tappi Press: Atlanta, GA, 1999; 969–978.
  • Weineisen, H.; Stenström, S. Modeling through drying of tissue—effect of pore size distribution on drying characteristics. Drying Technology 2005, 23(9–11), 1909–1923.
  • Weineisen, H.; Stenström, S. A model for through drying of tissue paper at constant pressure drop and high drying intensity. Drying Technology 2007, 25(12), 1949–1958.
  • Weineisen, H.; Stenström, S. Modeling drying and energy performance of industrial through-dryers. Drying Technology 2008, 26(6), 776–785.
  • Krook, R.; Stenström, S. Temperature gradients and heat flux measurements in hot pressing of paper. Experimental Heat Transfer 1998, 11(3), 221–240.
  • Larsson, H.; Nilsson, J.; Stenström, S. Experiments in a pilot-scale impulse unit-Heat transfer and water removal rates. Nordic Pulp and Paper Research Journal 2001, 16(2), 156–161.
  • Larsson, H.; Stenström, S. Experiments in a pilot-scale impulse unit-energy efficiencies. Nordic Pulp and Paper Research Journal 2001, 16(2), 162–167.
  • Nilsson, J. Heat transfer mechanisms in high-temperature pressing of paper. Licentiate thesis. Lund University, Sweden, 2001.
  • Nilsson, J.; Stenström, S. Modelling of heat transfer in hot pressing and impulse drying of paper. Drying Technology 2001, 19(10), 2469–2485.
  • Lienhard, J.H.I.; Lienhard, J.H.V. A Heat Transfer Textbook, 3rd ed.; Phlogiston Press: Cambridge, MA, 2001.
  • Krischer, O.; Kast, W. Die wissenschaftlichen grundlagen der trocknungstechnik, 3rd ed.; Springer-Verlag: Berlin, 1978.
  • Heikkilä, P. A study on the drying process of pigment coated paper webs. Ph.D. thesis. Åbo akademi, Finland, 1993.
  • Heikkilä, P.; Milosavljevic, N. Influence of thermal radiation on the total heat transfer coefficient at high impingement temperatures. In Proceedings of the 1st Nordic Drying Conference, Trondheim, Norway, 2001.
  • Bridgeman, O.C.; Aldrich, E.W. Vapor pressure tables for water. Journal of Heat Transfer 1964, 86(2), 279–286.
  • Bartles, B. Yankee Coating Practices, Educational Material; Ashland Water Technologies: Wilmington, DE, 2010.
  • Stenström, S.; Erikson, J.; Wimmerstedt, R. Measurement of condensate depth in ribbed Yankee cylinders. Tappi Journal 1990, 73(4), 97–101.
  • Stenstöm, S.; Näsman, L.; Wimmerstedt, R.; Erikson, J. Heat transfer calculations in ribbed Yankee cylinders. Tappi Journal 1990, 73(10), 269–273.
  • Rounds, D.A. Ribbed shell heat transfer. In Proceedings of the International Water Removal Symposium, Vancouver, Canada; Canadian Paper and Pulp Association: Montreal, Quebec, Canada, 1982; 35–39.
  • Cox, J.F. Optimal rectangular rib dimensions for heat transfer in ribbed Yankee dryer shells. Tappi 1967, 50(7), 368–371.
  • Sundberg, T.; Österberg, L. Thermal resistance between drying cylinders and paper. Svensk Papperstidning 1966, 69(24), 854–855.
  • Wilhelmsson, B.; Fagerholm, L.; Nilsson, L.; Stenström, S. An experimental study of contact coefficients in paper drying. Tappi Journal 1994, 77(5), 159–168.
  • Martin, H. Heat and mass transfer between impinging gas jets and solid surfaces. Advances in Heat Transfer 1977, 13, 1–60.
  • Heikkilä, P.; Milosavljevic, N. Investigation of impingement heat transfer coefficient at high temperatures. Drying Technology 2002, 20(1), 211–222.
  • Bird, R.B.; Stewart, W.E.; Lightfoot, E.N. Transport Phenomena, Revised 2nd ed.; Wiley: New York, 2006.
  • Polat, S. Heat and mass transfer in impingement drying. Drying Technology 1993, 11(6), 1147–1176.
  • Incropera, F.P.; DeWitt, D.P. Fundamentals of Heat and Mass Transfer, 4th ed.; Wiley: New York, 1996.
  • Chilton, T.H.; Colburn, A.P. Mass transfer (absorption) coefficients prediction from data on heat transfer and fluid friction. Industrial & Engineering Chemistry 1934, 26(11), 1183–1187.
  • Conde, M. Thermophysical properties of humid air, model and background. 2007. Retrieved June 25, 2015, from http://www.mrc-eng.com/Downloads/Moist%20Air%20Props%20English.pdf
  • Hyll, C.; Mattsson, L.; Vomhoff, H. Directional emittance of dry and moist paper. Nordic Pulp & Paper Research Journal 2014, 29(2), 294–303.
  • Minkina, W.; Dudzik, S. Infrared Thermography: Errors and Uncertainties; John Wiley & Sons Ltd: Chichester, UK, 2009.
  • Rounds, D.A.; Wedel, G.L. Drying rate and energy consumption for an air cap dryer system. In Proceedings of the first International Symposium on Drying, McGill University, Montreal, Canada, August 3–5; Mujumdar, A.S., Ed.; Science Press: Princeton, NJ, 1978; 185–191.
  • Lescanne, Y.; Moyne, C.; Perre, P. Diffusion mechanisms in a sheet of paper. In Drying’92: Proceedings of the 8th International Drying Symposium, Montreal, Canada, August 2–5, 1992; Mujumdar, A.S., Ed.; Elsevier: Montreal, 1017.
  • Ramarao, B.V.; Massaquete, A.; Lavrykov, S.; Ramaswamy, S. Moisture diffusion inside paper materials in the hygroscopic range and characteristics of diffusivity parameters. Drying Technology 2003, 21(10), 2007–2056.

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