most citedFlamelet modeling of thermo-diffusively unstable hydrogen-air flames

39 citations · 91 across the 5 of their papers we have counts for

collaborators

5 papers

physics.flu-dyn202311 cited

Assessment of flamelet manifolds for turbulent flame-wall interactions in Large-Eddy Simulations

Yujuan Luo, Matthias Steinhausen, Driss Kaddar +2

A turbulent side-wall quenching (SWQ) flame in a fully developed channel flow is studied using Large-Eddy Simulation (LES) with a tabulated chemistry approach. Three different flam…

physics.flu-dyn202312 cited

Application of dense neural networks for manifold-based modeling of flame-wall interactions

Julian Bissantz, Jeremy Karpowski, Matthias Steinhausen +5

Artifical neural networks (ANNs) are universal approximators capable of learning any correlation between arbitrary input data with corresponding outputs, which can also be exploite…

physics.flu-dyn20233 cited

Numerical Investigation of the Local Thermo-Chemical State in a Thermo-Acoustically Unstable Dual Swirl Gas Turbine Model Combustor

T. Jeremy P. Karpowski, Federica Ferraro, Matthias Steinhausen +6

In this work, the thermo-acoustic instabilities of a gas turbine model combustor, the so-called SFB606 combustor, are numerically investigated using Large Eddy Simulation (LES) com…

physics.flu-dyn202326 cited

Combined effects of heat loss and curvature on turbulent flame-wall interaction in a premixed dimethyl ether/air flame

Driss Kaddar, Matthias Steinhausen, Thorsten Zirwes +3

This study investigates the effects of curvature on the local heat release rate and mixture fraction during turbulent flame-wall interaction of a lean dimethyl ether/air flame usin…

physics.flu-dyn202339 cited

Flamelet modeling of thermo-diffusively unstable hydrogen-air flames

Hannes Böttler, Haris Lulic, Matthias Steinhausen +3

In order to reduce CO2 emissions, hydrogen combustion has become increasingly relevant for technical applications. In this context, lean H2-air flames show promising features but,…