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Original Articles

Creeping Flow of Viscoelastic Fluid Through a Packed Bed: Effect of Particle Shape and Porosity

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References

  • Ahmadi, M., S. Mohammadi, and A. N. Hayati. 2011. Analytical derivation of tortuosity and permeability of monosized spheres: A volume averaging approach. Physical Review E 83:026312.
  • Allen, K. G., T. W. V. Backstrom, and D. G. Kroger. 2013. Packed bed pressure drop dependence on particle shape, size distribution, packing arrangement and roughness. Powder Technology 246:590–600.
  • Bansal, A., R. K. Wanchoo, and S. K. Sharma. 2005. Flow regime transition in a trickle bed reactor. Chemical Engineering Communications 192:1046–1066.
  • Bansal, A., R. K. Wanchoo, and S. K. Sharma. 2007. Modeling of trickle bed reactors involving beds of different configurations under low and high interaction regimes. Industrial & Engineering Chemistry Research 46:677–683.
  • Bansal, A., R. K. Wanchoo, and S. K. Sharma. 2008. Two-phase pressure drop in a trickle bed reactor involving Newtonian/non Newtonian liquid phase. Chemical Engineering Communications 195:1085–1106.
  • Bendova, H., B. Siska, and I. Machac. 2009. Pressure drop excess in the flow of viscoelastic liquids through fixed beds of particles. Chemical Engineering and Processing 48:29–37.
  • Blake, F. C. 1922. The resistance of packing to fluid flow. Transactions of IChemE 14:415–421.
  • Chhabra, R. P. 2006. Bubbles, Drops, and Particles in Non-Newtonian Fluids. Boca Raton, FL: CRC Press.
  • Chhabra, R. P., J. Comiti, and I. Machac. 2001. Flow of non-Newtonian fluids in fixed and fluidized beds. Chemical Engineering Science 56:1–27.
  • Chhabra, R. P., and B. K. Srinivas. 1991. Non-Newtonian (purely viscous) fluid flow through packed beds: Effect of particle shape. Powder Technology 67:15–19.
  • Christopher, R. H., and S. Middleman. 1965. Power-law flow through a packed tube. Industrial & Engineering Chemistry Fundamentals 4:422–426.
  • Comiti, J., and M. A. Renaud. 1989. New model for determining mean structure parameters of fixed beds from pressure drop measurements: Application to beds packed with parallelepipedal particles. Chemical Engineering Science 44:1539–1545.
  • Dolejs, V., and I. Machac. 1995. Pressure drop during the flow of a Newtonian fluid through a fixed bed of particles. Chemical Engineering and Processing 34:1–8.
  • Duda, J. L., S. A. Hong, and E. E. Klaus. 1983. Flow of polymer solutions in porous media: Inadequacy of the capillary model. Industrial & Engineering Chemistry Fundamentals 22:299–305.
  • Durst, F., R. Haas, and W. Interthal. 1987. The nature of flows through porous media. Journal of Non-Newtonian Fluid Mechanics 22:169–189.
  • Eisfeld, B., and K. Schnitzlein. 2001. The influence of confining walls on the pressure drop in packed beds. Chemical Engineering Science 56:4321–4329.
  • Ergun, S. 1952. Fluid flow through packed columns. Chemical Engineering Progress 48:89–94.
  • Escudier, M. P., J. C. Evan, and R. J. Poole. 2005. Freezing as a storage process for aqueous polymer solutions. Applied Rheology 15:90–97.
  • Foumeny, E. A., A. Kulkarni, S. Roshani, and A. Vatani. 1996. Elucidation of pressure drop in packed-bed systems. Applied Thermal Engineering 16:195–202.
  • Jaiswal, A. K., T. Sundrarajan, and R. P. Chhabra. 1991. Flow of power law liquids through particle assemblages at intermediate Reynolds number. The Canadian Journal of Chemical Engineering 69:1235–1241.
  • Kaur, N., R. Singh, and R. K. Wanchoo. 2011. Flow of Newtonian and non Newtonian fluids through packed beds: An experimental study. Transport in Porous Media 90:655–671.
  • Kline, S. J., and F. A. McClintock. 1953. Describing uncertainties in single sample experiments. Mechanical Engineering 75:3–8.
  • Kozicki, W. 2002. Flow of FENE fluid in a packed beds or porous media. The Canadian Journal of Chemical Engineering 80:818–829.
  • Kumar, S., and S. N. Upadhyay. 1981. Mass and momentum transfer to Newtonian and non-Newtonian fluids in fixed and fluidized beds. Industrial & Engineering Chemistry Fundamentals 20:186–195.
  • Lanfrey, P. Y., Z. V. Kuzeljevic, and M. P. Dudukovic. 2010. Tortuosity model for fixed beds randomly packed with identical particles. Chemical Engineering Science 65:1891–1896.
  • Li, T., S. Li, J. Zhao, P. Lu, and L. Meng. 2012. Sphericities of non-spherical objects. Particuology 10:97–104.
  • Li, L., and W. Ma. 2011. Experimental study on the effective particle diameter of a packed bed with non-spherical particles. Transport in Porous Media 89:35–48.
  • MacDonald, J. F., M. S. El-Sayed, K. Mow, and F. A. L. Dullien. 1979. Flow through porous media – The Ergun equation revisited. Industrial & Engineering Chemistry Fundamentals 18:199–208.
  • Marshall, R. J., and A. B. Metzner. 1967. Flow of viscoelastic fluids through porous media. Industrial & Engineering Chemistry Fundamentals 6:393–400.
  • Mehta, D., and M. C. Hawley. 1969. Wall effect in packed columns. Industrial & Engineering Chemistry Process Design and Development 8:280–282.
  • Moffat, R. J. 1988. Describing the uncertainties in experimental results. Experimental Thermal and Fluid Science 1:3–17.
  • Nemec, D., and J. Levec. 2005. Flow through packed bed reactors. Chemical Engineering Science 60:6947–6957.
  • Ozahi, E., M. Y. Gundogdu, and M. O. Carpinlioglu. 2008. A modification on Ergun's correlation for use in cylindrical packed beds with non-spherical particles. Advanced Powder Technology 19:369–381.
  • Reichelt, W. 1972. Zur Berechnung des Druckverlustes einphasig durchstromter Kugel- und Zylinderschuttungen. Chemie-Ingenieur-Technik 44:1068–1071.
  • Savins, J. G. 1969. Non-Newtonian flow through porous media. Industrial & Engineering Chemistry Research 61:18–47.
  • Sobti, A., R. Gupta, R. Sirohi, and R. K. Wanchoo. 2013. Pressure drop studies on flow of viscoelastic fluid through a packed bed. Particulate Science and Technology 31:547–554.
  • Sobti, A., and R. K. Wanchoo. 2014. Creeping flow of viscoelastic fluid through a packed bed. Industrial & Engineering Chemistry Research 53:14508–14518.
  • Sochi, T. 2010a. Non-Newtonian flow in porous media. Polymer 51:5007–5023.
  • Sochi, T. 2010b. Flow of non Newtonian fluids in porous media. Journal of Polymer Science: Polymer Physics 48:2437–2467.
  • Tiu, C., J. Z. Q. Zhou, G. Nicolae, T. N. Fang, and R. P. Chhabra. 1997. Flow of viscoelastic polymer solutions in mixed beds of particles. The Canadian Journal of Chemical Engineering 75:843–850.

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