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36 Drying of Wood

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Perré P., 1992. Transferts couplés en milieux poreux nonsaturés.Possibilités et limitations de la formulationmacroscopique, Habilitation à Diriger des Recherches,INPL, Nancy.Perré, P., 1995. <strong>Drying</strong> with internal vaporization: introducingthe concept <strong>of</strong> identity drying card, <strong>Drying</strong>Technol. J., 13(5–7): 1077–1097.Perré, P., 1996. The numerical modelling <strong>of</strong> physical andmechanical phenomena involved in wood drying: anexcellent tool for assisting with the study <strong>of</strong> newprocesses, Tutorial, Proceedings <strong>of</strong> the Fifth InternationalIUFRO <strong>Wood</strong> <strong>Drying</strong> Conference, Québec,Canada, pp. 9–38.Perré P., 1997. Image analysis, homogenization, numericalsimulation and experiment as complementary toolsto enlighten the relationship between wood anatomyand drying behavior, <strong>Drying</strong> Technology Journal,15: 2211–2238.Perré P., 1998. 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Simulations par volumesfinis des transferts couplés en milieu poreuxanisotropes: séchage du bois à basse et à hautetemperature (Finite-volume simulation <strong>of</strong> thecoupled transfer in anisotropic porous media:wood drying at low and high temperature), Int.J. Heat Mass Transfer, 33(11): 2463–2478.Perré, P. and Karimi, A., 2002. Fluid migration in twospecies <strong>of</strong> beech (Fagus silvatica and Fagusorientalis): a percolation model able to accountfor macroscopic measurements and anatomicalobservations, Maderas: Ciencia Tecnologia, 4(1):50–68.Perré, P. and Martin, M., 1994. <strong>Drying</strong> at high temperature<strong>of</strong> heartwood and sapwood: theory, experiment andpractical consequence on kiln control, <strong>Drying</strong> Technol.,12(8): 1915–1941.Perré, P. and Passard, J., 1995. A control-volume procedurecompared with the finite-element method for calculatingstress and strain during wood drying, <strong>Drying</strong>Technol. J., Special Issue Mathematical Modellingand Numerical Techniques for the Solution <strong>of</strong> <strong>Drying</strong>Problems, 13(3): 635–660.Perré, P. and Passard, J., 2002. A computational model <strong>of</strong>wood drying able to improve innovative processes:the importance <strong>of</strong> the mechanical constitutive law,Proceedings <strong>of</strong> the 13th International <strong>Drying</strong> Symposium,<strong>Drying</strong> 2002, Beijing, China, 10 pp.Perré, P. and Turner, I., 1996. The use <strong>of</strong> macroscopicequations to simulate heat and mass transfer inporous media, in Turner, I., and Mujumdar, A.S.(Eds.), Mathematical Modeling and NumericalTechniques in <strong>Drying</strong> Technology, Marcel Dekker,New York.Perré, P. and Turner, I., 1997. Microwave drying <strong>of</strong> s<strong>of</strong>twoodin an oversized waveguide, AIChE J., 43(10):2579–2595.Perré, P. and Turner, I., 1999a. 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High-frequency current/vacuum lumber drying, Proceedings <strong>of</strong> the SeventhInternational IUFRO <strong>Wood</strong> <strong>Drying</strong> Conference,Tsukuba, Japan, pp. 128–133.Riley, S.G. and Haslett, A.N., 1996. Reducing air velocityduring timber drying, Proceedings <strong>of</strong> the Fifth InternationalIUFRO <strong>Wood</strong> <strong>Drying</strong> Conference, Québec,Canada, pp. 301–308.Riley, S.G. and Holmes, W.S., 2001. Development <strong>of</strong> amicrowave in-kiln moisture content measurementsystem that measures individual boards, Proceedings<strong>of</strong> the Seventh International IUFRO <strong>Wood</strong> <strong>Drying</strong>Conference, Tsukuba, Japan, pp. 348–353.Salin, J.-G., 1989. Remarks on the influence <strong>of</strong> heartwoodcontent in pine boards on final moisture contentß 2006 by Taylor & Francis Group, LLC.

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