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This study is concerning the flame chemistry of monoglyme (CH3OCH2CH2OCH3), an oxygenated compound recognized as a clean diesel additive and an ignition improver.
However, there are few reports concerning flame propagation and dust particle movement of a large-scale dust explosion process in open space.
The influencing parameters concerning flame condition include Reynolds number and equivalence ratio of the air fuel jet, and nozzle-to-surface distance.
Qualitative measurements concerning flame shape and the relative location of vortices within the reactant flow are also discussed.
Results of the numerical simulation concerning flame structure and propagation, burning function yb t) and development of pressure with time p t) are given for different fuels, different levels of turbulence intensity and different compression ratios.
Physical concepts concerning mechanisms of flame stabilization are discussed in terms of three important parameters namely the translational Reynolds number Re, the rotation Reynolds number Rer, and the fuel mole fraction XF.
This article concerns the flame dynamics of a bluff body stabilized turbulent premixed flame as it approaches lean blowoff.
This paper concerns the flame extinguishing with the use of acoustic waves.
This study concerns high temperature flame synthesis of ceramic deposits utilizing a mono-disperse stream of droplets composed of an aqueous precursor.
This method has several advantages concerning the study of flame transfer functions compared to injecting velocity perturbations.
What is a flame?
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