References
33
106. Umbanhowar PB, Swinney HL (2000) Wavelength scaling and square/stripe and grain
mobility transitions in vertically oscillated granular layers. Phys A 288(1–4):344–362
107. van de Klundert R (2001) Pattern formation in pulsated fludized beds and vertically vibrated
granular layers. MSc Thesis, Delft University of Technology, Delft, The Netherlands
108. van den Bleek CM, Coppens M-O, Schouten JC (2002) Application of chaos analysis to
multiphase reactors. Chem Eng Sci 57(22):4763–4778
109. van den Bleek CM, Schouten JC (1993) Deterministic chaos: a new tool in fluidized bed
design and operation. Chem Eng J Biochem Eng J 53(1):75–87
110. van der Hoef M, van Sint Annaland M, Deen NG, Kuipers JAM (2008) Numerical simulation
of dense gas-solid fluidized beds: a multiscale modeling strategy. Annu Rev Fluid Mech
40:47–70
111. van der Hoef M, Ye M, van Sint Annaland M, Andrews A, Sundaresan S, Kuipers JAM (2006)
Multiscale modeling of gas-fluidized beds. Adv Chem Eng 31:65–149
112. van Ommen JR, Nijenhuis J, Coppens M-O (2009) Reshaping the structure of fluidized beds.
In: CEP, pp 49–57
113. Wang X, Rhodes M (2005) Pulsed fluidization—a DEM study of a fascinating phenomenon.
Powder Technol 159(3):142–149
114. Wong H, Baird M (1971) Fluidisation in a pulsed gas flow. Chem Eng J 2(2):104–113
115. Wu K, Francia V, Coppens M-O (2020) Dynamic viscoplastic granular flows: a persistent
challenge in gas-solid fluidization. Powder Technol 365:172–185
116. Yang S, Li H, Zhu Q (2015) Experimental study and numerical simulation of baffled bubbling
fluidized beds with Geldart A particles in three dimensions. Chem Eng J 259:338–347
117. Zhang W, Vinals J (1997) Pattern formation in weakly damped parametric surface waves
driven by two frequency components. J Fluid Mech 341:225–244
118. Zhou GG, Sun Q (2013) Three-dimensional numerical study on flow regimes of dry granular
flows by DEM. Powder Technol 239:115–127
119. Zhou T, Kage H, Li H (2005) Bubble characteristics in a two-dimensional vertically vibrofluidized bed. China Particuol 3(4):224–228
120. Zhou T, Ogura H, Yamamura M, Kage H (2004) Bubble motion pattern and rise velocity in
two-dimensional horizontal and vertical vibro-fluidized beds. Can J Chem Eng 82(2):236–242
33
106. Umbanhowar PB, Swinney HL (2000) Wavelength scaling and square/stripe and grain
mobility transitions in vertically oscillated granular layers. Phys A 288(1–4):344–362
107. van de Klundert R (2001) Pattern formation in pulsated fludized beds and vertically vibrated
granular layers. MSc Thesis, Delft University of Technology, Delft, The Netherlands
108. van den Bleek CM, Coppens M-O, Schouten JC (2002) Application of chaos analysis to
multiphase reactors. Chem Eng Sci 57(22):4763–4778
109. van den Bleek CM, Schouten JC (1993) Deterministic chaos: a new tool in fluidized bed
design and operation. Chem Eng J Biochem Eng J 53(1):75–87
110. van der Hoef M, van Sint Annaland M, Deen NG, Kuipers JAM (2008) Numerical simulation
of dense gas-solid fluidized beds: a multiscale modeling strategy. Annu Rev Fluid Mech
40:47–70
111. van der Hoef M, Ye M, van Sint Annaland M, Andrews A, Sundaresan S, Kuipers JAM (2006)
Multiscale modeling of gas-fluidized beds. Adv Chem Eng 31:65–149
112. van Ommen JR, Nijenhuis J, Coppens M-O (2009) Reshaping the structure of fluidized beds.
In: CEP, pp 49–57
113. Wang X, Rhodes M (2005) Pulsed fluidization—a DEM study of a fascinating phenomenon.
Powder Technol 159(3):142–149
114. Wong H, Baird M (1971) Fluidisation in a pulsed gas flow. Chem Eng J 2(2):104–113
115. Wu K, Francia V, Coppens M-O (2020) Dynamic viscoplastic granular flows: a persistent
challenge in gas-solid fluidization. Powder Technol 365:172–185
116. Yang S, Li H, Zhu Q (2015) Experimental study and numerical simulation of baffled bubbling
fluidized beds with Geldart A particles in three dimensions. Chem Eng J 259:338–347
117. Zhang W, Vinals J (1997) Pattern formation in weakly damped parametric surface waves
driven by two frequency components. J Fluid Mech 341:225–244
118. Zhou GG, Sun Q (2013) Three-dimensional numerical study on flow regimes of dry granular
flows by DEM. Powder Technol 239:115–127
119. Zhou T, Kage H, Li H (2005) Bubble characteristics in a two-dimensional vertically vibrofluidized bed. China Particuol 3(4):224–228
120. Zhou T, Ogura H, Yamamura M, Kage H (2004) Bubble motion pattern and rise velocity in
two-dimensional horizontal and vertical vibro-fluidized beds. Can J Chem Eng 82(2):236–242
