106
C. Neugebauer et al.
29. Bachmann, P., Bück, A., Tsotsas, E.: Investigation of the residence time behavior of particulate
products and correlation for Bodenstein number in horizontal fluidized beds. Powder Technol.
301, 1067–1076 (2017a)
30. Bachmann, P., Bück, A., Tsotsas, E.: Investigation of the residence time behavior of particulate
products and correlation for Bodenstein number in horizontal fluidized beds with internal weirs.
Powder Technol. 308, 378–387 (2017b)
31. Deen, N., van Sint, A.M., van der Hoef, M., Kuipers, J.: Review of discrete particle modeling
of fluidized beds. J. Chem. Eng. Sci. 62, 28–44 (2007)
32. Pietsch, S., Kieckhefen, P., Heinrich, S., Müller, M., Schönherr, M., Kleine Jäger, F.: CFDDEM modelling of circulation frequencies and residence times in a prismatic spouted bed.
Chem. Eng. Res. Des. 132, 1105–1116 (2018)
33. Kieckhefen, P., Lichtenegger, T., Pietsch, S., Pirker, S., Heinrich, S.: Simulation of spray coating
in a spouted bed using recurrence CFD. Particuology 42, 92–103 (2019)
34. Fang, M., Luo, K., Yang, S., Zhang, K., Fan, J.: Computational fluid dynamics-discrete element
method investigation of solid mixing characteristics in an internally circulating fluidized bed.
Ind. Eng. Chem. Res. 52, 7556–7568 (2013)
35. Wang, S., Luo, K., Hu, C., Fan, J.: CFD-DEM study of the effect of ring baffles on system
performance of a full-loop circulating fluidized bed. Chem. Eng. Sci. 196, 130–144 (2019)
36. Yang, S., Cahyadi, A.: CFD-DEM investigation into the scaling up of spout-fluid beds via two
interconnected chambers. AIChE J. 62, 1898–1916 (2016)
37. Yang, S., Zhang, L., Sun, Y., Chew, J.: Improving the operational stability of the multi-chamber
spout-fluid bed via the insertion of a submerged partition. AIChE J. 63, 485–500 (2017)
38. Weller, H., Tabor, G., Jasak, H., Fureby, C.: A tensorial approach to computational continuum
mechanics using object-oriented techniques. Comput. Phys. 12, 620–631 (1998)
39. Zhou, Z., Kuang, S., Chu, K., Yu, A.: Discrete particle simulation of particle-fluid flow: model
formulations and their applicability. J. Fluid Mech. 661, 482–510 (2010)
40. Goniva, C., Kloss, C., Deen, N., Kuipers, J., Pirker, S.: Influence of rolling friction on single
spout fluidized bed simulation. Particuology 10, 582–591 (2012)
41. Kloss, C., Goniva, C., Hager, A., Amberger, S., Pirker, S.: Models, algorithms and validation
for open source DEM and CFD-DEM. Prog. Comput. Fluid Dyn. 12, 140–152 (2012)
42. Diez, E., Kieckhefen, P., Meyer, K., Bück, A., Tsotsas, E., Heinrich, S.: Particle dynamics in
a multi-staged fluidized bed: particle transport behavior on micro-scale by discrete particle
modelling. Adv. Powder Technol. 30, 2014–2031 (2019)
43. Hoffmann, T., Rieck, C., Bück, A., Tsotsas, E.: Influence of granule porosity during fluidized
bed spray granulation. Proc. Eng. 102, 458–467 (2015)
44. Wagner, W.: New vapour pressure measurements for argon and nitrogen and a new method for
establishing rational vapour pressure equations. Cryogenics 13, 470–482 (1973)
45. Tzika, M., Alexandridou, S., Kiparissides, C.: Evaluation of the morphological and release
characteristics of coated fertilizer granules produced in a Wurster fluidized bed. Powder Technol. 132, 16–24 (2003)
46. Whitehouse, D.: Surfaces and Their Measurement, pp. 16–95. Butterworth-Heinemann, Boston
(2002)
47. DIN EN ISO 25178-2 (2012) Geometrical product specifications (GPS)—Surface texture:
Areal—Part 2: Terms, definitions and surface texture parameters. International Standards Organization
48. Dadkhah, M., Peglow, M., Tsotsas, E.: Characterization of the internal morphology of agglomerates produced in a spray fluidized bed by X-ray tomography. Powder Technol. 228, 349–358
(2012)
49. Sondej, F., Bück, A., Koslowsky, K., Bachmann, P., Jacob, M., Tsotsas, E.: Investigation of
coating layer morphology by micro-computed X-ray tomography. Powder Technol. 273, 165–
175 (2015)
50. Antonyuk, S., Tomas, J., Heinrich, S., Mörl, L.: Breakage behaviour of spherical granulates by
compression. Chem. Eng. Sci. 60, 4031–4044 (2005)
C. Neugebauer et al.
29. Bachmann, P., Bück, A., Tsotsas, E.: Investigation of the residence time behavior of particulate
products and correlation for Bodenstein number in horizontal fluidized beds. Powder Technol.
301, 1067–1076 (2017a)
30. Bachmann, P., Bück, A., Tsotsas, E.: Investigation of the residence time behavior of particulate
products and correlation for Bodenstein number in horizontal fluidized beds with internal weirs.
Powder Technol. 308, 378–387 (2017b)
31. Deen, N., van Sint, A.M., van der Hoef, M., Kuipers, J.: Review of discrete particle modeling
of fluidized beds. J. Chem. Eng. Sci. 62, 28–44 (2007)
32. Pietsch, S., Kieckhefen, P., Heinrich, S., Müller, M., Schönherr, M., Kleine Jäger, F.: CFDDEM modelling of circulation frequencies and residence times in a prismatic spouted bed.
Chem. Eng. Res. Des. 132, 1105–1116 (2018)
33. Kieckhefen, P., Lichtenegger, T., Pietsch, S., Pirker, S., Heinrich, S.: Simulation of spray coating
in a spouted bed using recurrence CFD. Particuology 42, 92–103 (2019)
34. Fang, M., Luo, K., Yang, S., Zhang, K., Fan, J.: Computational fluid dynamics-discrete element
method investigation of solid mixing characteristics in an internally circulating fluidized bed.
Ind. Eng. Chem. Res. 52, 7556–7568 (2013)
35. Wang, S., Luo, K., Hu, C., Fan, J.: CFD-DEM study of the effect of ring baffles on system
performance of a full-loop circulating fluidized bed. Chem. Eng. Sci. 196, 130–144 (2019)
36. Yang, S., Cahyadi, A.: CFD-DEM investigation into the scaling up of spout-fluid beds via two
interconnected chambers. AIChE J. 62, 1898–1916 (2016)
37. Yang, S., Zhang, L., Sun, Y., Chew, J.: Improving the operational stability of the multi-chamber
spout-fluid bed via the insertion of a submerged partition. AIChE J. 63, 485–500 (2017)
38. Weller, H., Tabor, G., Jasak, H., Fureby, C.: A tensorial approach to computational continuum
mechanics using object-oriented techniques. Comput. Phys. 12, 620–631 (1998)
39. Zhou, Z., Kuang, S., Chu, K., Yu, A.: Discrete particle simulation of particle-fluid flow: model
formulations and their applicability. J. Fluid Mech. 661, 482–510 (2010)
40. Goniva, C., Kloss, C., Deen, N., Kuipers, J., Pirker, S.: Influence of rolling friction on single
spout fluidized bed simulation. Particuology 10, 582–591 (2012)
41. Kloss, C., Goniva, C., Hager, A., Amberger, S., Pirker, S.: Models, algorithms and validation
for open source DEM and CFD-DEM. Prog. Comput. Fluid Dyn. 12, 140–152 (2012)
42. Diez, E., Kieckhefen, P., Meyer, K., Bück, A., Tsotsas, E., Heinrich, S.: Particle dynamics in
a multi-staged fluidized bed: particle transport behavior on micro-scale by discrete particle
modelling. Adv. Powder Technol. 30, 2014–2031 (2019)
43. Hoffmann, T., Rieck, C., Bück, A., Tsotsas, E.: Influence of granule porosity during fluidized
bed spray granulation. Proc. Eng. 102, 458–467 (2015)
44. Wagner, W.: New vapour pressure measurements for argon and nitrogen and a new method for
establishing rational vapour pressure equations. Cryogenics 13, 470–482 (1973)
45. Tzika, M., Alexandridou, S., Kiparissides, C.: Evaluation of the morphological and release
characteristics of coated fertilizer granules produced in a Wurster fluidized bed. Powder Technol. 132, 16–24 (2003)
46. Whitehouse, D.: Surfaces and Their Measurement, pp. 16–95. Butterworth-Heinemann, Boston
(2002)
47. DIN EN ISO 25178-2 (2012) Geometrical product specifications (GPS)—Surface texture:
Areal—Part 2: Terms, definitions and surface texture parameters. International Standards Organization
48. Dadkhah, M., Peglow, M., Tsotsas, E.: Characterization of the internal morphology of agglomerates produced in a spray fluidized bed by X-ray tomography. Powder Technol. 228, 349–358
(2012)
49. Sondej, F., Bück, A., Koslowsky, K., Bachmann, P., Jacob, M., Tsotsas, E.: Investigation of
coating layer morphology by micro-computed X-ray tomography. Powder Technol. 273, 165–
175 (2015)
50. Antonyuk, S., Tomas, J., Heinrich, S., Mörl, L.: Breakage behaviour of spherical granulates by
compression. Chem. Eng. Sci. 60, 4031–4044 (2005)
