Results 231 to 240 of about 1,396,030 (264)
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Turbulent burning velocity of methane–air–dust premixed flames
Combustion and Flame, 2018Ali S. Rangwala, Sreenivasan Ranganathan
exaly +2 more sources
, 2020
In this study we clarify the role of differential diffusion characterized by effective Lewis number, Leeff, on the self-similar accelerative propagation and the associated turbulent burning velocity of turbulent expanding flames.
Xiao Cai +5 more
semanticscholar +1 more source
In this study we clarify the role of differential diffusion characterized by effective Lewis number, Leeff, on the self-similar accelerative propagation and the associated turbulent burning velocity of turbulent expanding flames.
Xiao Cai +5 more
semanticscholar +1 more source
, 2020
Syngas has been widely concerned and tested in various thermo-power devices as one promising alternative fuel. However, little is known about the turbulent combustion characteristics, especially on outwardly propagating turbulent syngas/air premixed ...
Zuo-Yu Sun, Cangsu Xu
semanticscholar +1 more source
Syngas has been widely concerned and tested in various thermo-power devices as one promising alternative fuel. However, little is known about the turbulent combustion characteristics, especially on outwardly propagating turbulent syngas/air premixed ...
Zuo-Yu Sun, Cangsu Xu
semanticscholar +1 more source
Temperature effect on turbulent burning velocity of lean premixed hydrogen/air flames
The Physics of FluidsHydrogen has drawn great attention in recent years as a carbon-free fuel. The turbulent burning velocity (ST) is an important parameter for the design and modeling of hydrogen-fueled engines given the high propagation speed of hydrogen flames.
Yi-Qing Wang +4 more
semanticscholar +1 more source
Turbulent Burning Velocity of High Hydrogen Flames
Volume 3A: Combustion, Fuels, and EmissionsThe turbulent burning velocity (ST) is one of the most important combustion properties controlling combustor operability limits, directly influencing blowoff, flashback, and combustion instabilities.
Hari Priya Rajagopalan +4 more
semanticscholar +1 more source
Development of a turbulent burning velocity model based on flame stretch concept for SI engines
, 2020According to the US Energy Information Administration, fossil fuels will remain the main source of energy for transportation over the next decades and thus the combustion of these fuels remains an important concern.
Behdad Afkhami +3 more
semanticscholar +1 more source
Experimental Study of Turbulent Burning Velocity of Premixed Biogas Flame
Journal of energy resources technology, 2018Biogas is a renewable source of energy produced by anaerobic digestion of organic material and composed mainly of methane (CH4) and carbon dioxide (CO2).
Ahmad Ayache, M. Birouk
semanticscholar +1 more source
The Effects of Turbulent Burning Velocity Models in a Swirl-Stabilized Lean Premixed Combustor
International journal of turbo & jet-engines, 2018The effects of turbulent burning velocities in a turbulent premixed combustion simulation with a G-equation are investigated using the 3D LES technique.
Jong-Chan Kim +3 more
semanticscholar +1 more source
Effect of DC Electric Field on Turbulent Flame Structure and Turbulent Burning Velocity
, 2023Yiming Li +6 more
semanticscholar +1 more source

