Experimental investigation of low-temperature autoignition in turbulent premixed swirling flames
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Jinhua Wang | Weijie Zhang | Zuo-hua Huang | W. Lin | Xiao Cai | Runze Mao | Wang Han
[1] Zheng Chen,et al. Effects of stratification on premixed cool flame propagation and modeling , 2021, Combustion and Flame.
[2] Jinhua Wang,et al. Effect of DME addition on turbulent flame structure in lean premixed CH4/DME/air mixtures , 2021 .
[3] Jinhua Wang,et al. Experimental study of compact swirl flames with lean premixed CH4/H2/air mixtures at stable and near blow-off conditions , 2021 .
[4] M. Ihme,et al. Analysis of low-temperature chemistry in a turbulent swirling spray flame near lean blow-out , 2020 .
[5] H. Bockhorn,et al. Ignition of dimethyl ether/air mixtures by hot particles: Impact of low temperature chemical reactions , 2020 .
[6] Y. Ju,et al. Dynamics of cool flames , 2019, Progress in Energy and Combustion Science.
[7] Michael E. Mueller,et al. Turbulent nonpremixed cool flames: Experimental measurements, Direct Numerical Simulation, and manifold-based combustion modeling , 2019, Combustion and Flame.
[8] G. Bruneaux,et al. A conceptual model of the flame stabilization mechanisms for a lifted Diesel-type flame based on direct numerical simulation and experiments , 2019, Combustion and Flame.
[9] E. Hawkes,et al. Low-temperature chemistry in n-heptane/air premixed turbulent flames , 2018, Combustion and Flame.
[10] Jacqueline H. Chen,et al. Direct numerical simulation of a temporally evolving air/n-dodecane jet at low-temperature diesel-relevant conditions , 2018, Combustion and Flame.
[11] Jianren Fan,et al. Dynamics of triple-flames in ignition of turbulent dual fuel mixture: A direct numerical simulation study , 2018, Proceedings of the Combustion Institute.
[12] Bret C. Windom,et al. Study of ignition chemistry on turbulent premixed flames of n-heptane/air by using a reactor assisted turbulent slot burner , 2016 .
[13] C. Law,et al. Initiation and propagation of laminar premixed cool flames , 2016 .
[14] C. Law,et al. Stabilization of laminar nonpremixed DME/air coflow flames at elevated temperatures and pressures , 2015 .
[15] C. Law,et al. Autoignition-affected stabilization of laminar nonpremixed DME/air coflow flames , 2015 .
[16] Rolf D. Reitz,et al. Review of high efficiency and clean reactivity controlled compression ignition (RCCI) combustion in internal combustion engines , 2015 .
[17] X. Bai,et al. Large eddy simulation of n-Dodecane spray combustion in a high pressure combustion vessel , 2014 .
[18] Bo Jiang,et al. The role of low temperature fuel chemistry on turbulent flame propagation , 2014 .
[19] Jean-François Bourgouin,et al. Dynamics of Swirling Flames , 2014 .
[20] Tianfeng Lu,et al. Direct numerical simulations of the ignition of lean primary reference fuel/air mixtures with temperature inhomogeneities , 2013 .
[21] E. Mastorakos,et al. A Comparison of the Blow-Off Behaviour of Swirl-Stabilized Premixed, Non-Premixed and Spray Flames , 2013 .
[22] M. Musculus,et al. Conceptual models for partially premixed low-temperature diesel combustion , 2013 .
[23] Linda G. Blevins,et al. Modeling of bare and aspirated thermocouples in compartment fires , 1999 .
[24] G. Bruneaux,et al. Effect of methane on pilot-fuel auto-ignition in dual-fuel engines , 2019, Proceedings of the Combustion Institute.
[25] O. Kaario,et al. Large-eddy simulation of dual-fuel ignition: Diesel spray injection into a lean methane-air mixture , 2019, Combustion and Flame.
[26] Jacqueline H. Chen,et al. A parametric study of ignition dynamics at ECN Spray A thermochemical conditions using 2D DNS , 2019, Proceedings of the Combustion Institute.
[27] E. Hawkes,et al. Direct numerical simulations of rich premixed turbulent n-dodecane/air flames at diesel engine conditions , 2019, Proceedings of the Combustion Institute.
[28] Scott A. Skeen,et al. Understanding the ignition mechanism of high-pressure spray flames , 2017 .
[29] Jacqueline H. Chen,et al. Polybrachial structures in dimethyl ether edge-flames at negative temperature coefficient conditions , 2015 .
[30] A. Ghoniem,et al. Thermo-acoustic instabilities in lean premixed swirl-stabilized combustion and their link to acoustically coupled and decoupled flame macrostructures , 2015 .
[31] John E. Dec,et al. Advanced compression-ignition engines—understanding the in-cylinder processes , 2009 .
[32] F. Dryer,et al. Thermal decomposition reaction and a comprehensive kinetic model of dimethyl ether , 2008 .