Publication Cover
Drying Technology
An International Journal
Volume 36, 2018 - Issue 11
93
Views
0
CrossRef citations to date
0
Altmetric
ARTICLES

Numerical modeling assessment of mechanical effect in bovine leather drying process

, &
Pages 1313-1325 | Received 13 Jun 2017, Accepted 02 Nov 2017, Published online: 20 Dec 2017

References

  • Kowalski, S. J.; Rajewska, K.; Rybicki, A. Mechanical Effects in Saturated Capillary-Porous Materials During Convective and Microwave Drying. Drying Technol. 2004, 22(10), 2291–2308.
  • Jomaa, W.; Puiggali, J. R. Drying of Shrinking Materials: Modellings with Shrinkage Velocity. Drying Technol. 1991, 9(5), 1271–1293.
  • Couture, F.; Laurent, S.; Roques, M. A. Drying of Two‐Phase Media: Simulation with Liquid Pressure as Driven Force. AIChE J. 2007, 53(7), 1703–1717.
  • Kechaou, N. Etude théorique et expérimentale du processus de séchage de produits agroalimentaires; Faculté des Sciences de Tunis: Tunis, 2000.
  • Mihoubi, D.; Bellagi, A. Drying Induced Stresses During Convective and Combined Microwave and Convective Drying of Saturated Porous Media. Drying Technol. 2009, 27(7), 851–856.
  • Chemkhi, S.; Zagrouba, F.; Bellagi, A. Mathematical Model for Drying of Highly Shrinkable Media. Drying Technol. 2004, 22(5), 1023–1039.
  • Kechaou, N. Séchage des gels fortement déformables: Études de la diffusion interne de l’eau et modélisation; Institut National Polytechnique de Loraine: Loraine, 1989.
  • Mihoubi, D.; Bellagi, A. Two-Dimensional Heat and Mass Transfer During Drying of Deformable Media. Appl. Math. Modell. 2008, 32(3), 303–314.
  • Bird, R. B.; Stewart, W. E.; Lightfoot, E. N. Transport Phenomena, 2nd ed.; John Wiley & Sons: New York, 2002.
  • Crank, J. The Mathematics of Diffusion; Oxford University: New York, 1975.
  • Ketelaars, A. A. J. Drying Deformable Media Kinetics, Shrinkage and Stresses. Drying Technol. 1994, 12(4), 983–987.
  • Moyne, C.; Kechaou, N.; Do Amral Sobral, P. J.; Roques, M.; Cairault, A.; Bizot, H. Mechanism of Water Transport in Drying of Gels. Int. Chem. Eng. 1994, 34(3), 360–369.
  • Kowalski, S. J.; Rajewska, K. Drying Induced Stresses in Elastic and Viscoelastic Saturated Materials. Chem. Eng. Sci. 2002, 57, 3883–3892.
  • Whitaker, S. Flow in Porous Media I: A Theoretical Derivation of Darcy’s Law. Transp. Porous Media 1986, 1(1), 3–25.
  • Whitaker, S. Flow in Porous Media II: The Governing Equations for Immiscible, Two-Phase Flow. Transp. Porous Media 1986, 1(2), 105–125.
  • Whitaker, S. Flow in Porous Media III: Deformable Media. Transp. Porous Media 1986, 1(2), 127–154.
  • Kowalski, S. J.; Rajewska, K.; Rybicki, A. Stresses Generated During Convective and Microwave Drying. Drying Technol. 2005, 23(9), 1875–1893.
  • Kowalski, S. J.; Rajewska, K.; Rybicki, A. Destruction of Wet Materials by Drying. Chem. Eng. Sci. 2000, 55, 5755–5762.
  • Jiang, J.; Lu, J.; Huang, R.; Li, X. Effects of Time and Temperature on the Viscoelastic Properties of Chinese Fir Wood. Drying Technol. 2009, 27(11), 1229–1234.
  • Hammouda, I.; Mihoubi, D. Modeling of Thermo-Hydro-Viscoelastic Behavior of a Partially Saturated Ceramic Material During Drying. Drying Technol. 2014, 32(10), 1219–1230.
  • Hassini, L.; Peczalski, R.; Laurent, P.; Azzouz, S. 2-D Hydro-Viscoelastic Model for Convective Drying of Highly Deformable Saturated Product. Drying Technol. 2015, 33(15–16), 1872–1882.
  • Khalfaoui, K.; Chemkhi, S.; Zagrouba, F. Modeling and Stress Analysis During Drying of a Deformable and Saturated Porous Medium. Drying Technol. 2013, 31(10), 1124–1137.
  • Banaszak, J.; Kowalski, S. J. Drying Induced Stresses Estimated on the Base of Elastic and Viscoelastic Models. Chem. Eng. J. 2002, 86, 139–143.
  • Hasatani, M.; Itaya, Y. Fundamental Study on Shrinkage of Formed Clay During Drying. Viscoelastic Strain-Stress and Heat/Moisture Transfer. Drying Technol. 1992, 10(4), 1013–1036.
  • Telis-Romero, J.; Gabas, A. L.; Sobral, J. A. P. Osmo-Convective Drying of Mango Cubes in Fluidized and Tray Dryer. In Proceedings of the 14th International Drying Symposium, São Paulo, Brazil, August 22–25, 2004.
  • Haghi, A. A Mathematical Model of the Drying Process. Acta Polytech. 2001, 41(3), 20–23.
  • Haghi, A.; Rondot, D. Heat and Mass Transfer in Leather Drying Process. Iran. J. Chem. Chem. Eng. 2004, 23(1), 25–34.
  • Liu, C.-K.; Latona, N. P.; Ramos, M. A.; Goldberg, N. M. Mechanical Properties and Area Retention of Leather Dried with Biaxial Stretching Under Vacuum. J. Mater. Sci. 2010, 45(7), 1889–1896.
  • Ershad-Langroudia, A.; Mirmontahaia, A.; Vahidzadeh, R. Viscoelastic Behavior of Treated Historical Leather with Nanocomposite. In Proceedings of the 4th International Conference on Nanostructures (ICNS4), Kish Island, Islamic Republic of Iran, March 12–14, 2012.
  • Kouadio, N. G. J.-S. Contribution à l’amélioration de la qualité des cuirs sales verts de bovins au Senegal et destinés à l’exportation: Cas de la société de gestion des abattoirs du senegal; Faculté de Médecine, de Pharmacie et d’Odonto-Stomatologie de Dakar: Dakar, 1979.
  • Zagrouba, F.; Mihoubi, D.; Bellagi, A. Drying of Clay. II: Rheological Modelisation and Simulation of Physical Phenomena. Drying Technol. 2002, 20(10), 1895–1917.
  • Mihoubi, D.; Zagrouba, F.; Vaxelaire, J.; Bellagi, A.; Roques, M. Transfer Phenomena During the Drying of a Shrinkable Product: Modeling and Simulation. Drying Technol. 2004, 22(1–2), 91–109.
  • Mihoubi, D. Deshydratation d’argiles par compression et séchage. Aspects de modélisation et de simulation; Université de Pau et des Pays de l’Adour: Pau, 2004.
  • Mihoubi, D.; Bellagi, A. Stress Generated During Drying of Saturated Porous media. Transp. Porous Media 2009, 80(3), 519–536.
  • Ashish, D.; Ashim, K. D. Transport in Deformable Food Materials: A Poromechanics Approach. Chem. Eng. Sci. 2011, 66(24), 6482–6497.
  • Crank, J. The Mathematics of Diffusion; Oxford University Press: London, 1990.
  • Berg, C.; Bruin, S. Water Activity and Its Estimation in Food Systems: Theoretical Aspects. In Water activity: Influences on food quality; Rockland, L. B., Stewart, G. F., Eds.; Academic Press: New York, 1981; 2–61.
  • Fakhfakh, R.; Mihoubi, D.; Haddar, N.; Kechaou, N. Effet du séchage sur les propriétés mécaniques du cuir de bovin semi fini. Proceedings of Journées Tunisiennes sur les écoulements et les transferts Hammamet, Tunisia, December 19–21, 2016.
  • Janna, W. S. Engineering Heat Transfer; CRC Press: Florida, 1999.
  • Perry, R. H.; Green, D. W.; Maloney, J. O. Perry’s Chemical Engineers’ Handbook, 7th ed.; McGraw-Hills New York: New york, 1997.
  • Lemus-Mondaca, R. A.; Zambra, C. E.; Vega-Gálvez, A.; Moraga, N. O. Coupled 3d Heat and Mass Transfer Model for Numerical Analysis of Drying Process in Papaya Slices. J. Food Eng. 2013, 116(1), 109–117.
  • Fakhfakh, R.; Pierre, F.; Kechaou, N.; Perre, P. Simultaneous Measurement of Drying Kinetics and Shrinkage of Tunisian Bovine Leather During Convective Drying. Proceedings of The 20th International Drying Symposium, Gifu, Japan, August 7–10, 2016.
  • Hammouda, I.; Mihoubi, D. Modelling of Drying Induced Stress of Clay: Elastic and Viscoelastic Behaviours. Mech. Time-Depend. Mater. 2014, 18(1), 97–111.
  • Almeida, G.; Lancha, J. P.; Pierre, F.; Casalinho, J.; Perré, P. Physical Behavior of Highly Deformable Products During Convective Drying Assessed by a New Experimental Device. Drying Technol. 2017, 35(8), 906–917.
  • Manel, B. A.; Mihoubi, D.; Jalila, S.; Ahmed, B. Strain-Stress Formation During Stationary and Intermittent Drying of Deformable Media. Drying Technol. 2014, 32(10), 1245–1255.
  • Manel, B. A.; Jalila, S.; Daoued, M.; Ahmed, B. Multiphase Thermo-Hydro-Mechanical Model for Concrete Under Drying at High Temperatures. Drying Technol. 2015, 33(2), 143–152.
  • Benboudjema, F.; Meftah, F.; Torrenti, J.-M. Interaction Between Drying, Shrinkage, Creep and Cracking Phenomena in Concrete. Eng. Struct. 2005, 27(2), 239–250.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.