Citation: Iw. Turner et al., A NUMERICAL INVESTIGATION OF COMBINED MICROWAVE AND CONVECTIVE DRYINGOF A HYGROSCOPIC POROUS MATERIAL - A STUDY BASED ON PINE WOOD, Chemical engineering research & design, 76(A2), 1998, pp. 193-209
Citation: S. Leperson et al., NEAR-INFRARED DRYING OF PHARMACEUTICAL THIN-FILMS - EXPERIMENTAL-ANALYSIS OF INTERNAL MASS-TRANSPORT, Chemical engineering and processing, 37(3), 1998, pp. 257-263
Citation: P. Sebastian et al., DESIGNING DRYERS USING HEAT AND MASS-EXCHANGE NETWORKS - AN APPLICATION TO CONVEYOR BELT DRYERS, Chemical engineering research & design, 74(A8), 1996, pp. 934-943
Citation: F. Couture et al., AN ALTERNATIVE CHOICE FOR THE DRYING VARIABLES LEADING TO A MATHEMATICALLY AND PHYSICALLY WELL DESCRIBED PROBLEM, Drying technology, 13(3), 1995, pp. 519-550
Citation: P. Bonneau et Jr. Puiggali, INFLUENCE OF HEARTWOOD-SAPWOOD PROPORTIONS ON THE DRYING KINETICS OF A BOARD, Wood Science and Technology, 28(1), 1993, pp. 67-85
Citation: P. Bonneau et Jr. Puiggali, PRODUCT CHARACTERISTICS AND BOUNDARY-COND ITIONS IN CONVECTIVE DRYINGPROCESS, Revue générale de thermique, 32(375-76), 1993, pp. 158-165
Citation: P. Sebastian et al., MATRICES OF HEAT AND MASS-TRANSFER UNIT MODULES - RELEVANT TOOLS FOR ANALYSIS OF DRYERS, International journal of heat and mass transfer, 36(7), 1993, pp. 1763-1772
Citation: P. Sebastian et al., HEAT AND MASS-TRANSFER UNIT NUMBERS - TOOLS FOR RAPID DRYER SIMULATIONS, International journal of heat and mass transfer, 36(7), 1993, pp. 1773-1782