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TU Berlin

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Forschungsschwerpunkte

Lupe
  • Numerische Untersuchung bewegter Partikel/Fluidsysteme hinsichtlich Dynamik und Wärmeübertragung
  • Kopplung der Diskrete-Elemente-Methode (DEM) mit der Lattice-Boltzmann-Methode (LBM)
  • Performance-Vergleich zwischen den Kopplungen DEM/LBM und DEM/FVM

Veröffentlichungen

Wu M., Peters B., Rosemann T., Kruggel-Emden H., 2020, A Forcing Fictitious Domain Method to Simulate Fluid-particle Interaction of Particles with Super-quadric Shape, Powder Technology 15, 264-277.

Rosemann T., Kravets B., Reinecke S.R., Kruggel-Emden H., Wu M., Peters B., 2019, Comparison of numerical schemes for 3D lattice Boltzmann simulations of moving rigid particles in thermal fluid flows, Powder Technology 356, 528-546.

Wu M., Peters B., Rosemann T., Kruggel-Emden H., 2019, An interface resolved immersed boundary method in XDEM for particulate flow simulations, Partec 2019, Nuremberg, Germany.

Reinecke S.R., Rosemann T., Kruggel-Emden H., Blahout S., Hussong J., 2019, Coupled DEM / LBM Simulation of DLD Fractionation, Partec 2019, Nuremberg, Germany.

Rosemann T., Kravets B., Reinecke S.R., Kruggel-Emden H., Wu M., Peters B., 2019, Comparison of boundary treatments in thermal Lattice Boltzmann simulations of moving particles in fluids, Partec 2019, Nuremberg, Germany.

Kravets B., Rosemann T., Reinecke S. R., Kruggel-Emden H., 2019, A new drag force and heat transfer correlation derived from direct numerical LBM-simulations of flown through particle packings, Powder Technology 345, 438–456.

Kravets B., Rosemann T., Kruggel-Emden H., 2018, Modeling of Heat and Momentum Transfer in the Context of Moving Particles by a Double MRT Lattice Boltzmann Scheme, 8th World Congress on Particle Technology (WCPT), Orlando, USA.  

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Tony Rosemann

Wissenschaftlicher Mitarbeiter
+49(0)30-314-22731
Room BH-N-411