Magnetic field assisted fluidization—Dimensional analysis addressing the physical basis
Tài liệu tham khảo
Barenblatt, 1996
Bridgman, P. W. (1978). Dimensional analysis. New York: AMS Press (reprint of 1951 edition of Yale Univ. Press, New Haven).
Castellanos, 2005, The relationship between attractive interparticle forces and bulk behaviour in dry and uncharged fine powders, Advances in Physics, 54, 263, 10.1080/17461390500402657
Franzreb, 2001, Liquid-phase mass transfer of magnetic ion exchangers in magnetically influenced fluidized beds. I. dc fields, Reactive & Functional Polymers, 46, 247, 10.1016/S1381-5148(00)00061-4
Gibilaro, 2001
Hammond, 1997
Hausmann, R. (2000). Mass transfer in fluidized bed with magnetic particles. Doctoral Dissertation, Inst. Tech. Chem. Research Centre. Karlsruhe, Germany: University Fridericiana (in German).
Hristov, 1996, Fluidization of ferromagnetic particles in a magnetic field. Part 1. The effect of the field lines orientation on bed stability, Powder Technology, 87, 59, 10.1016/0032-5910(95)03070-0
Hristov, 1998, Fluidization of ferromagnetic particles in a magnetic field. Part2. Field effects of preliminarily fluidized beds, Powder Technology, 97, 35, 10.1016/S0032-5910(97)03392-5
Hristov, 2002, Magnetic field assisted fluidization—A unified approach. Part 1. Fundamentals and relevant hydrodynamics, Reviews in Chemical Engineering, 18, 295, 10.1515/REVCE.2002.18.4-5.295
Hristov, 2004, Magnetic field assisted fluidization—A unified approach. Part 4. Moving gas-fluidized beds, Reviews in Chemical Engineering, 20, 377, 10.1515/REVCE.2004.20.5-6.377
Hristov, 2004, Expansion scaling and elastic moduli of gas-fluidized magnetizable beds, 477
Hristov, 2006, Magnetic field assisted fluidization—A unified approach. Part 5. A hydrodynamic treatise on liquid–solid fluidized beds, Reviews in Chemical Engineering, 22, 195, 10.1515/REVCE.2006.22.4-5.195
Hristov, 2006, Scaling of permeabilities and friction factors of homogeneously expanding gas–solids fluidized beds: Geldart's A powders and magnetically stabilized beds, Thermal Science, 10, 19, 10.2298/TSCI0601019H
Jovanovic, 2004, Magnetically assisted liquid–solid fluidization in normal and microgravity conditions: Experiment and theory, Powder Technology, 148, 80, 10.1016/j.powtec.2004.09.028
Ke, C. S., & Leu, L. P. (1995). Axial dispersion in liquid-solid magnetic fluidized beds. In Proc. Symp. on Transport Phenomena and Applications (pp. 517–522). Taipei, China: Taiwan University (in Chinese).
Kirko, 1960, The specific features of a fluidized bed of ferromagnetic particles in a magnetic field, Journal Tecknicheskoi Fiziki, 30, 1081
Kline, 1965
Kunii, 1991
Kwauk, 1992
Lu, 1998, Experimental study on liquid–solid fluidization in homogeneous transverse rotating magnetic field, Engineering Chemical Metallurgy (China), 19, 339
Lu, 1999, Solid–liquid fluidization under transverse rotating magnetic field, Selected Papers EC & M’98 (China), 10, 144
Lu, 1999, Iron-particle chain formation and rotation in fluidized bed under transverse rotating magnetic field, Journal of Chemical and Industrial Engineering (China), 50, 692
Ma, X., & Kwauk, M. (1985). Particulate fluidization of ferromagnetic particles in uniform magnetic field. Beijing, China: Chemical Reaction Engineering Laboratory for Extractive Metallurgy, Inst. of Chem. Metall., Academica Sinica.
Martin, 1996, Chain model of electrorheology, Journal of Chemical Physics, 104, 4814, 10.1063/1.471176
Melle, 2002, Polarizable particle aggregation under rotating magnetic fields using scattering dichroism, Journal of Colloid Interface Science, 247, 200, 10.1006/jcis.2001.8087
Rosensweig, 1981, Structure of magnetically stabilized fluidized solids, vol. 4, 137
Valverde, 2003, Effect of particle size and interparticle force on the fluidization behaviour of gas-fluidized beds, Physical Review E, 051305, 1
Zhang, 1990, Mathematical model and generalized phase diagram for liquid–solid fluidization in uniform magnetic field, Chemical and Reaction Engineering Technology (China), 2, 1