Sima Farazi, M. Sc.

E-Mail: s.farazi(at)itv.rwth-aachen.de

Adresse:
              Institut für Technische Verbrennung
              RWTH Aachen University
              Templergraben 64
              52056 Aachen

Telefon: +49 (0)241 80-94626
Telefax: +49 (0)241 80-92923

Büro:  210 (2. Etage)


Arbeitsgebiete

Forschung: Direct Numerical Simulation and Modeling of Oxy-Fuel Combustion

Lehre: Numerische Strömungssimulation

Publikationen

  • Antonio Attili, Pooria Farmand, Christoph Schumann, Sima Farazi, Benjamin Böhm, Tao Li, Christopher Geschwindner, Jan Köser, Andreas Dreizler and Heinz Pitsch. Numerical Simulations and Experiments of Ignition of Solid Particles in a Laminar Burner: Effects of Slip Velocity and Particle Swelling. Flow, Turbulence and Combustion, vol. 106 no. 2, pages 515-531, 2021. [DOI]
  • A. Attili, P. Farmand, C. Schumann, S. Farazi, B. Bohm, T. Li, C. Geschwindner, J. Koser, A. Dreizler and H. Pitsch. Numerical Simulations and Experiments of Ignition of Solid Particles in a Laminar Burner: Effects of Slip Velocity and Particle Swelling. Flow Turbulence and Combustion, 2020. [DOI]
  • A. Attili, P. Farmand, S. Farazi, B. Böhm, T. Li, C. Geschwinder, J. Köser, A. Dreizler and H. Pitsch. Numerical simulation and experiments of ignition and combustion of solid particles in a laminar burner. In International Workshop on Clean Combustion: Principles and Applications, September 25th-26th, Darmstadt, Germany, 2019.
  • Sima Farazi, Antonio Attili, Seongwon Kang and Heinz Pitsch. Numerical study of coal particle ignition in air and oxy-atmosphere. Proceedings of the Combustion Institute, vol. 37 no. 3, pages 2867-2874, 2019. [DOI]
  • S. Farazi, J. Hinrichs, M. Davidovic, T. Falkenstein, M. Bode, S. Kang, A. Attili and H. Pitsch. Numerical investigation of coal particle stream ignition in oxy-atmosphere. Fuel, vol. 241, pages 477-487, 2019. [DOI]
  • S. Farazi, M. Schiemann, N. Vorobiev, V. Scherer, S. Kang and H. Pitsch. A new variable transport coefficient single-film model for char combustion. In Proceedings of the European Combustion Meeting, April 18th-21st, Dubrovnik, Croatia, 2017.
  • Sima Farazi, Mohsen Sadr, Seongwon Kang, Martin Schiemann, Nikita Vorobiev, Viktor Scherer and Heinz Pitsch. Resolved simulations of single char particle combustion in a laminar flow field. Fuel, vol. 201, pages 15-28, 08 2017. 1st International Workshop on Oxy-Fuel Combustion, Montabaur, GERMANY, FEB 10-11, 2016. [DOI]
  • Taraneh Sayadi, Sima Farazi, Seongwon Kang and Heinz Pitsch. Transient multiple particle simulations of char particle combustion. Fuel, vol. 199, pages 289-298, 2017. [DOI]
  • S. Farazi, T. Sayadi and H. Pitsch. Numerical analysis of the drag force acting on the reactive single char particle under oxy-fuel condition. In Proceedings of the China National Symposium on Combustion, 2016.
  • S. Farazi and H. Pitsch. Fully resolved simulation of single and group particle combustion in an oxy-fuel atmosphere. In Oxyflame International Workshop, February 10th-11th, Montabaur, Germany, 2016.

Offene Stellen/Arbeiten

Studien-/ Bachelor-/ Masterarbeit:

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