Passive scalar interface in a spatially evolving mixing layer (A. Attili and D. Denker)

Quartz nozzle sampling (D. Felsmann)

Dissipation element analysis of a planar diffusion flame (D. Denker)

Turbulent/non-turbulent interface in a temporally evolving jet (D. Denker)

Dissipation elements crossing a flame front (D. Denker and B. Hentschel)

Particle laden flow (E. Varea)

Turbulent flame surface in non-premixed methane jet flame (D. Denker)

DNS of primary break up (M. Bode)

Diffusion flame in a slot Bunsen burner (S. Kruse)

Various quantities in spatially evolving jet diffusion flame (D. Denker)

OH layer in a turbulent wall bounded flame (K. Niemietz)

Marco Vivenzo

E-Mail: m.vivenzo(at)itv.rwth-aachen.de

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

Telefon: +49 (0)241 80-94619
Telefax: +49 (0)241 80-92923

Büro:  217 (2. Etage)


Arbeitsgebiete

Main Research Interests:

  • Development of combustion models for hydrogen thermodiffusive instabilities
  • Development of GPU-based solvers for chemical kinetics
  • Computational fluid dynamics and high performance computing

Teaching:

  • Teaching Assistant of Multiphase Flows

Publikationen

  • M. Vivenzo, D. Kaddar, T. Grenga, F. Ferraro, C. Hasse and H. Pitsch. Development and assessment of an approach to accelerate reaction kinetics evaluation in CPU-based CFD solvers through GPUs. Proceedings of the 11th European Combustion Meeting, 2023.

Offene Stellen/Arbeiten

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