TY - JOUR
T1 - Experimental study on the effect of external thermal pattern on the dynamics of methane-oxygen and methane-oxygen–carbon dioxide premixed flames in non-adiabatic meso-scale reactors
AU - Baigmohammadi, Mohammadreza
AU - Tabejamaat, Sadegh
N1 - Publisher Copyright:
© 2018 Elsevier Masson SAS
PY - 2019/3
Y1 - 2019/3
N2 - In the current study, the effect of external thermal pattern on the dynamics and characteristics of methane-oxygen and methane-oxygen-carbon dioxide premixed flames in non-adiabatic meso-scale cylindrical reactors is investigated experimentally. In this regard, two different external thermal patterns were imposed on the outer surface of the reactors. The results showed that imposing method/direction and also temperature level of the external thermal pattern have impressive effect on flame dynamics and chemiluminescence in the non-adiabatic meso-scale reactors. Also, it was shown that increasing the temperature level of the external thermal pattern could significantly extend the flame stability and its presence range in the meso-scale reactors, especially for the vitiated mixtures (methane-oxygen-carbon dioxide). Moreover, the results demonstrated that decreasing the inner diameter of a meso-scale reactor, which was subjected to an external thermal pattern, could increase the flame controllability and its presence range in the non-adiabatic meso-scale reactors.
AB - In the current study, the effect of external thermal pattern on the dynamics and characteristics of methane-oxygen and methane-oxygen-carbon dioxide premixed flames in non-adiabatic meso-scale cylindrical reactors is investigated experimentally. In this regard, two different external thermal patterns were imposed on the outer surface of the reactors. The results showed that imposing method/direction and also temperature level of the external thermal pattern have impressive effect on flame dynamics and chemiluminescence in the non-adiabatic meso-scale reactors. Also, it was shown that increasing the temperature level of the external thermal pattern could significantly extend the flame stability and its presence range in the meso-scale reactors, especially for the vitiated mixtures (methane-oxygen-carbon dioxide). Moreover, the results demonstrated that decreasing the inner diameter of a meso-scale reactor, which was subjected to an external thermal pattern, could increase the flame controllability and its presence range in the non-adiabatic meso-scale reactors.
KW - Carbon dioxide
KW - External thermal pattern
KW - Flame dynamics
KW - Meso-scale reactor
KW - Methane
KW - Oxygen
UR - https://www.scopus.com/pages/publications/85057484669
U2 - 10.1016/j.ijthermalsci.2018.11.023
DO - 10.1016/j.ijthermalsci.2018.11.023
M3 - Article
AN - SCOPUS:85057484669
SN - 1290-0729
VL - 137
SP - 242
EP - 252
JO - International Journal of Thermal Sciences
JF - International Journal of Thermal Sciences
ER -