This paper describes recent progress in the field of Direct Numerical Simulations (DNS) for premixed turbulent combustion. A classification of Computational Fluid Dynamics …
CK Westbrook, Y Mizobuchi, TJ Poinsot… - Proceedings of the …, 2005 - Elsevier
Progress in the field of computational combustion over the past 50 years is reviewed. Particular attention is given to those classes of models that are common to most system …
A turbulent flame–wall interaction (FWI) configuration is studied using three-dimensional direct numerical simulation (DNS) and detailed chemical kinetics. The simulations are used …
MC Drake, DC Haworth - Proceedings of the Combustion Institute, 2007 - Elsevier
Twenty years ago, homogeneous-charge spark-ignition gasoline engines (using carburetion, throttle-body-, or port-fuel-injection) were the dominant automotive engines …
Direct numerical simulations are performed to investigate the transient upstream propagation (flashback) of premixed hydrogen–air flames in the boundary layer of a fully …
KNC Bray - Symposium (International) on Combustion, 1996 - Elsevier
The challenge appearing in the title of this paper is directed to the whole combustion research community. In recent decades, combustion science has made remarkable …
T Zirwes, T Häber, F Zhang, H Kosaka… - Flow, Turbulence and …, 2021 - Springer
The numerical investigation of quenching distances in laminar flows is mainly concerned with two setups: head-on quenching (HOQ) and side-wall quenching (SWQ). While most of …
In this paper, a computational study was performed using a combination of several numerical tools to better understand the limiting aspects of combustion in a passive pre …
P Popp, M Baum - Combustion and Flame, 1997 - Elsevier
Experimental investigations of the head-on quenching of a laminar methane flame have produced conflicting statements about the magnitude of the wall heat flux during quenching …