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«References for the lectures of Prof. Dr.-Ing. Martin Sommerfeld Abrahamson, J.: Collision rates of small particles in a vigorously turbulent fluid. ...»

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References for the lectures of Prof. Dr.-Ing. Martin Sommerfeld

Abrahamson, J.: Collision rates of small particles in a vigorously turbulent fluid. Chem. Eng.

Sci., Vol. 30, 1371-1379 (1975)

Basset, A.B.: On the motion of a sphere in a viscous liquid. Phil. Trans. Roy. Soc., Vol. A179,

43-69 (1888)

Berlemont, A., Desjonqueres, P. and Gouesbet, G.: Particle Lagrangian simulation in

turbulent flows. Int. J. Multiphase Flow, Vol. 16, 19-34 (1990)

Bothe, D., Schmidtke, M. and Warnecke, H.-J.: Direct numerical computation of the lift force acting on single bubbles. CD-Rom Proceedings 6th Int. Conf. on Multiphase Flow, ICMF 2007, July 9-13, Leipzig, Germany Böttner, C.-U. und Sommerfeld, M.: Messung und numerische Berechnung der Partikelbewegung im Elektroabscheider. Chemie Ingenieur Technik, Jahrg. 75, 188-194 (2003) Boussinesq, J.V.: Sur la resistance d’une sphere solide. C.R. Hebd. Seanc. Acad. Sci. Paris, Vol. 100, pp. 935 (1885) Boivin, M., Simonin, O. & Squires, K. D. Direct numerical simulation of turbulence modulation by particles in isotropic turbulence. J. Fluid Mech., Vol. 375, pp. 235-263 (1998) Brenner, H.: The slow motion of a sphere through a viscous fluid towards a plane surface.

Chem. Engng. Sci., Vol. 16, 242-251 (1961) Bröder, D. and Sommerfeld, M.: Planar shadow image velocimetry for the analysis of the hydrodynamics in bubbly flows. Measurement Science and Technology, Vol. 18, 2513 – 2528 (2007) Calabrese, R.V. and Middleman, S.: The dispersion of discrete particles in a turbulent fluid field. AIChE J., 25, 1025-1035 (1979) Clift, R., Grace, J.R. and Weber, M.E.: Bubbles, Drops and Particles. Academic Press, New York, (1978) Crowe, C.T., Sharma, M.P. and Stock, D.E.: The Particle-source-in-cell (PSI-cell) model for gas-droplet flows. J. of Fluids Engng. Vol. 99, 325-332 (1977) Crowe, C.T.: On the relative importance of particle-particle collisions in gas-particle flows.

Proc. of the Conf. on Gas Borne Particles, Paper C78/81, 135-137 (1981) Crowe, C.T., Troutt, T.R. and Chung, J.N.: Numerical models for two-phase turbulent flows.

Ann. Rev. Fluid Mechanics, Vol. 28, 11 – 43 (1996) Crowe, C.T., Sommerfeld, M. & Tsuji, Y.: Fundamentals of Gas-Particle and Gas-Droplet Flows. CRC Press, Boca Raton, USA (1998) Crowe, C.T. (Ed): Multiphase Flow Handbook. CRC Press, Taylor & Francis Group, Boca Raton, USA (2006) Crowe, C.T., Schwarzkopf, J.D., Sommerfeld, M. and Tsuji, Y.: Multiphase Flows with Droplets and Particles. 2nd Edition, CRC Press, Boca Raton, U.S.A. (2012), ISBN 978-1- 4398-4050-4.

Cui, Y., Schmalfuß, S., Zellnitz, S., Sommerfeld, M. and Urbanetz, N.: Towards the optimisation and adaptation of dry powder inhalers. International Journal of Pharmaceutics, Vol. 470, 120 – 132 (2014) Davies, C.N.: Definitive equation for the fluid resistance of spheres. Proc. Phys. Soc. Vol. 57, 1060-1065 (1945) Decker, S. and Sommerfeld, M.: Numerical calculations of two-phase flows in agitated vessels using the Euler/Lagrange approach. Proc. of the ASME 2000 Fluid Engineering Division Summer Meeting, Paper No. FEDSM‘00-11154 (2000) Decker, S.: Zur Berechnung von gerührten Suspensionen mit dem Euler-Lagrange-Verfahren.

Dissertation, Fachbereich Ingenieurwissenschaften, Martin-Luther-Universität HalleWittenberg, 2005 Dennis, S.C.R., Singh, S.N. and Ingham, D.B.: The steady flow due to a rotating sphere at low and moderate Reynolds numbers. J. Fluid Mechanics, Vol. 101, 257-279 (1980) Dietzel, M. and Sommerfeld, M.: Determination of aerodynamic coefficients of agglomerates using the Lattice-Boltzmann-Method. Proceedings 6th Int. Conf. on CFD in Oil & Gas, Metallurgical and Process Industries. Trondheim Norway, Paper No. CFD08-105, June 2008.

Dietzel, M. and Sommerfeld, M.: LBM simulations on agglomerate transport and deposition.

The 6th International Symposium on Multiphase Flow, Heat Mass Transfer and Energy Conversion, Xi'an (China), 11–15 July 2009; AIP Conference Proceedings Volume 1207; pp.

796-801 (2010), ISBN: 978-0-7354-0744-2 Dietzel, M. Ernst, M. and Sommerfeld, M.: Application of the Lattice-Boltzmann-Method in two-phase flow studies: From point-particles to fully resolved particles. Proceedings of ASME-JSME-KSME Joint Fluid Engineering Conference 2011 (AJK2011-FED) July 2011, Hamamatsu, Shizuoka, Japan, Paper No. AJK2011-04033.

Dietzel, M. and Sommerfeld, M.: Numerical calculation of flow resistance for agglomerates with different morphology by the Lattice-Boltzmann Method. Powder Technology, Vol. 250, 122–137 (2013) Ernst, M. and Sommerfeld, M.: On the volume fraction effects on inertial colliding particles in homogeneous isotropic turbulence. Journal of Fluids Engineering, Transactions of the ASME, Vol. 134, March 2012, Start Page: 031302, DOI No. 10.1115/1.4005681 Ernst, M., Dietzel, M. and Sommerfeld, M.: A lattice Boltzmann method for simulating transport and agglomeration of resolved particles. Acta Mechanica, Vol. 224, 2425-2449 (2013) Fan, L.-S. and Tsuchiya, K.: Bubble wake dynamics in liquids and liquid-solid suspensions.

Butterworth-Heinemann, Oxford U.K. (1990) Ergun, S.: Fluid flow through packed columns. Chemical Engineering Progress, Vol. 48, 93Fan, L.-S. and Tsuchiya, K.: Bubble wake dynamics in liquids and liquid-solid suspensions.

Butterworth-Heinemann, Oxford U.K. (1990) Feng, Y.Q., Yu, A.B. (2007) Microdynamic modelling and analysis of the mixing and segregation of binary mixtures of particles in gas fluidization, Chemical Engineering Science, 62, 256-268 Glaeser, H. and Brauer, H.: Berechnung des Impuls- und Stofftransports durch die Grenzfläche einer formveränderlichen Blase. VDI-Forschungsheft 581, VDI-Verlag Düsseldorf Germany (1977) Goldman, A.J., Cox, R.G. & Brenner, H.: Slow viscous motion of a sphere parallel to a plane wall-I Motion through a quiescent fluid. Chem. Eng. Sci. Vol. 22, 637-651 (1967) 2 Gosman, A.D. & Ioannides, I.E.: Aspects of computer simulation of liquid-fueled combustors.





Aerospace Science Meeting, Paper No. AIAA-81-0323 (1981) Göz, M.F. and Sommerfeld, M.: Analysis of bubble interactions in bidisperse bubble swarms by direct numerical simulation. Bubbly Flows: Analysis, Modelling and Calculation (Ed.

Sommerfeld, M.); Series: Heat and Mass Transfer, Springer Verlag, Berlin/Heidelberg, pp.

175-190 (2004) Gouesbet, G. and Berlemont, A.: Eulerian and Lagrangian approaches for predicting the behaviour of discrete particles in turbulent flows. Progress in Energy and Combustion Science, Vol. 25, 133-159 (1999) Gourdel, C., Simonin, O. and Brunier, E.: Modelling and simulation of gas-solid turbulent flows with a binary mixture of particles. Third Int. Conf. on Multiphase Flow, Lyon, France (1998) Gourdel, C., Simonin, O., & Brunier, E.: Two-Maxwellian equilibrium distribution function for the modelling of a binary mixture of particles. Circulating Fluidised Bed Technology VI, Proc. of the 6th Int. Conference on Circulating Fluidised Beds, Ed. J. Werther, DECHEMA, Frankfurt (Main) Germany, 205-210. (1999) Haberman, W.L. and Morton R.K.: An experimental study of bubbles moving in liquids.

Trans. American Society of Civil Engineers, Paper No. 2799, 227-250 (1954) Haider, A. & Levenspiel, O.: Drag coefficient and terminal velocity of spherical and nonspherical particles. Powder Technology, 58, 63-70 (1989) Helland, E., Occelli, R., Tadrist, L. (2002) Computational study of fluctuating motions and cluster structures in gas-particle flows, International Journal of Multiphase Flow, 28, 199-223 Hjelmfelt Jr., A.T. and Mockros, L.F.: Motion of discrete particles in a turbulent fluid, Applied Scientific Research, 16, 149-161 (1966) Ho, C.A. and Sommerfeld, M.: Modelling of micro-particle agglomeration in turbulent flow.

Chemical Engineering Science, Vol. 57, 3073-3084 (2002) Ho, Chi Anh: Modellierung der Partikelagglomeration im Rahmen des Euler/LagrangeVerfahrens und Anwendung zur Berechnung der Staubabscheidung im Zyklon. Dissertation Fachbereich Ingenieurwissenschaften, Martin-Luther-Universität Halle-Wittenberg, 2004 Ho, C.A. und Sommerfeld, M.: Numerische Berechnung der Staubabscheidung im Gaszyklon unter Berücksichtigung der Partikelagglomeration. Chemie Ingenieur Technik, Jg. 77, 282Hölzer, A. and Sommerfeld, M.: Lattice Boltzmann simulations to determine drag, lift and torque acting on non-spherical particles. Computers and Fluids Vol. 38, 572-589 (2009) Hölzer, A. and Sommerfeld, M.: Analysis of the behaviour of cylinders in homogeneous isotropic turbulence by Lattice-Boltzmann method. ERCOFTAC Bulletin No.82, 11 – 16 (2010) Hoomans, B.P.B., Kuipers, J.A.M., Briels, W.J., Van Swaaij, W.P.M. (1996) Discrete Particle Simulation of Bubble and Slug Formation in a Two-Dimensional Gas-Fluidised Bed: A HardSphere Approach, Chemical Engineering Science, Vol. 51, No. 1, 99-108 Hua J., Lin P.L., and Stene J.F.: Numerical Simulation of Gas Bubbles Rising in Viscous Liquids at High Reynolds Number. In: 6th Int. Conference on Multiphase Flow, ICMF 2007, Leipzig Germany, 9. – 13. July 2007.

3 Huber, N. and Sommerfeld, M.: Modelling and numerical calculation of dilute-phase pneumatic conveying in pipe systems. Powder Technology, Vol. 99, 90-101 (1998) Kohnen, G., Rüger, M. and Sommerfeld, M.: Convergence behaviour for numerical calculations by the Euler/Lagrange method for strongly coupled phases, Numerical Methods in Multiphase Flows 1994, (Eds. C.T. Crowe et al.), ASME Fluids Engineering Division Summer Meeting, Lake Tahoe, U.S.A., FED-Vol. 185, 191-202 (1994) Kohnen, G. and Sommerfeld, M.: Analysis of turbulence modification in a backward facing step flow using the Euler-Lagrange approach. Multiphase Flow (Eds. Chen, X. and Ge, M.), Proceedings of the the International Symposium on Multiphase Flow, Bejing, China, 242-249 (1997) Kohnen, G.: Über den Einfluß der Phasenwechselwirkung bei turbulenten Zweiphasenströmungen und deren numerische Erfassung in der Euler-Lagrange Betrachtungsweise, Dissertation Universität Halle, Shaker Verlag Aachen (1997) Kohnen, G. und Sommerfeld, M.: Numerische Berechnung verdampfender Sprühnebel.

Chemische Technik, Jahrg. 50, 225-234 (1998) Kussin, J. and Sommerfeld, M.: Experimental studies on particle behaviour and turbulence modification in horizontal channel flow with different wall roughness. Experiments in Fluids, Vol. 33, 143-159 (2002) Lain, S., Bröder, D., Sommerfeld, M. and Göz, M.F.: Modelling hydrodynamics and turbulence in a bubble column using the Euler-Lagrange procedure. International Journal of Multiphase Flows, Vol. 28, 1381-1407 (2002 a)) Laín S., Sommerfeld M. and Kussin J.: Experimental studies and modelling of four-way coupling in particle-laden horizontal channel flow. Int. Journal of Heat and Fluid Flow, Vol.

23, 647-656 (2002) Lain, S. and Sommerfeld, M.: Euler/Lagrange computations of pneumatic conveying in a horizontal channel with different wall roughness. Powder Technology, Vol. 184, 76-88 (2008) Lain, S. and Sommerfeld, M.: Numerical calculation of pneumatic conveying in horizontal channels and pipes: Detailed analysis of conveying behaviour. International Journal of Multiphase Flow, Vol. 39, 105–120 (2012) Laín, S. and Sommerfeld, M.: Characterisation of pneumatic conveying systems using the Euler/Lagrange approach. Powder Technology, Vol. 235, 764-782 (2013) Laín, S. and Sommerfeld, M.: Parameters influencing dilute-phase pneumatic conveying through pipe systems: A computational study by the Euler/Lagrange approach. In print: The Canadian Journal of Chemical Engineering, 2014 Lamb, H.: Hydrodynamics. 6th Edition, Cambridge University Press, Cambridge U.K. (1932) Lavieville, J., Deutsch, E. and Simonin, O.: Large eddy simulation of interactions between colliding particles and a homogeneous isotropic turbulence field. Gas-Particle Flows, (Eds.

Stock et al.), ASME, FED-Vol. 228, 359-369 (1995) Lee, S.L. and Durst, F.: on the motion of particles in turbulent duct flows. Int. J. Multiphase Flow, Vol. 8, 125 – 146 (1982) Legendre, D. and Magnaudet, J.: A note on the lift force on a spherical bubble or drop in a low-Reynolds-number shear flow. Physics of Fluids, Vol. 9, 3572-3574 (1997) Liao, Y. and Lucas, D.: A literature review on mechanisms and models for the coalescence process of fluid particles. Chem. Eng. Science, Vol. 65, 2851 – 2864 (2010) 4 Lipowsky, J. and Sommerfeld, M.: Time dependent simulation of a swirling two-phase flow using an anisotropic turbulent dispersion model. Proceedings of the ASME Fluids Engineering Summer Conference, Houston, Texas, Paper No. FEDSM2005-77210 (2005) Loth, E.: Numerical approaches for motion of dispersed particles, droplets and bubbles.

Progress in Energy and Combustion Science, Vol. 26, 161-223 (2000) Maxey, M.R. & Riley, J.J.: Equation of motion for a small rigid sphere in a nonuniform flow.

Phys. of Fluids, Vol. 26, 883-889 (1983) Mei, R.: An approximate expression for the shear lift force on a spherical particle at finite Reynolds number. Int. J. Multiphase Flow, 18, 145-147 (1992) Michaelides, E.E.: A novel way of computing the Basset term in unsteady multiphase flow computations. Phys. Fluids A, Vol. 4, 1579-1582 (1992) Michaelides, E.E.: Particles, Bubbles and Drops: Their Motion, Heat and Mass Transfer.

World Scientific Publishing Co., Singapore (2006) Michaelides E.E. and Roig A.: A reinterpretation of the Odar and Hamilton data on the unsteady equation of motion of particles. AIChE J. Vol. 57, 2997-3002 (2011) Odar, F. and Hamilton, W.S.: Forces on a sphere accelerating in a viscous fluid. J. Fluid Mech., Vol. 18, 302-314 (1964) Oesterlé, B. and Bui Dinh, T., Experiments on the lift of a spinning sphere in a range of intermediate Reynolds numbers, Experiments in Fluids, Vol. 25, 16-22 (1998) Oseen, C.W.: Hydromechanik, Akademische Verlagsgemeinschaft Leipzig, pp. 132 (1927) Prince M.J. and Blanch H.W.: Bubble coalescence and break-up in air-sparged bubble columns. AIChE-Journal, Vol. 36, 1485-1499 (1990) Reeks, M.W. and McKee, S.: The dispersive effect of Basset history forces on particle motion in turbulent flow. Phys. of Fluids, Vol. 27, 1573 (1984) Richardson, J.F. and Zaki, W.N.: Sedimentation and fluidisation: Part I. Trans. Institution Chemical Engineers, Vol. 32, 35-53 (1954) Rubinow, S.I. and Keller, J.B.: The transverse force on spinning sphere moving in a viscous fluid. J. Fluid Mech., Vol. 11, 447-459 (1961) Rüger, M., Hohmann, S., Sommerfeld, M. and Kohnen, G.: Euler/Lagrange calculations of turbulent sprays: The effect of droplet collisions and coalescence. Atomization and Sprays, Vol. 10, 47-81 (2000) Saffman, P.G. and Turner, J.S.: On the collision of drops in turbulent clouds. J. Fluid Mech.



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