作者: Stefan Schälike , Klaus-Dieter Wehrstedt , Markus Gawlowski , Axel Schönbucher
关键词: Computational fluid dynamics 、 Interferometry 、 Probability density function 、 Laminar flow 、 Adiabatic flame temperature 、 Holographic interferometry 、 Large eddy simulation 、 Thermocouple 、 Chemistry 、 Mechanics 、 Analytical chemistry
摘要: Computational fluid dynamics simulation is used to predict transient and time-averaged flame temperatures species concentrations of an n-hexane pool flame. Employing a combination assumed probability density function approach with laminar flamelets using detailed kinetic data large eddy Smagorinsky submodel shown be promising way in modeling tank fires. The measured concentration temperature profiles from gas chromatography, thermocouple measurements holographic interferometry are validate the submodels for CFD flames.