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Dynamics of a Transversely Excited Swirling, Lifted Flame: Flame Response Modeling and Comparison With ExperimentsACHARYA, Vishal; MALANOSKI, Michael; AGUILAR, Michael et al.Journal of engineering for gas turbines and power. 2014, Vol 136, Num 5, issn 0742-4795, 051503.1-051503.10Article

Experimental Study on Lifted Flames Operated with Liquid Kerosene at Elevated Pressure and Stabilized by Outer RecirculationKASABOV, P; ZARZALIS, N; HABISREUTHER, P et al.Flow, turbulence and combustion. 2013, Vol 90, Num 3, pp 605-619, issn 1386-6184, 15 p.Article

Autoignited and non-autoignited lifted flames of pre-vaporized n-heptane in coflow jets at elevated temperaturesSANG KYU CHOI; HO CHUNG, Suk.Combustion and flame. 2013, Vol 160, Num 9, pp 1717-1724, issn 0010-2180, 8 p.Article

Toward an understanding of the stabilization mechanisms of lifted turbulent jet flames : ExperimentsLYONS, Kevin M.Progress in energy and combustion science. 2007, Vol 33, Num 2, pp 211-231, issn 0360-1285, 21 p.Article

Conditional reaction rate in a lifted turbulent H2/N2 flame using direct numerical simulationHAIOU WANG; KUN LUO; JIANREN FAN et al.International journal of hydrogen energy. 2014, Vol 39, Num 6, pp 2703-2714, issn 0360-3199, 12 p.Article

Stabilization of turbulent lifted jet flames assisted by pulsed high voltage dischargeCRINER, K; CESSOU, A; LOUICHE, J et al.Combustion and flame. 2006, Vol 144, Num 1/2, pp 422-425, issn 0010-2180, 4 p.Article

Level-set based flamelet approach for simulating turbulent lifted jet flameKANG, Sungmo; KIM, Hoojoong; KIM, Yongmo et al.International journal for numerical methods in fluids. 2008, Vol 58, Num 5, pp 573-589, issn 0271-2091, 17 p.Article

Studies on the liftoff properties of dimethyl ether jet diffusion flamesYUAN XUE; YIGUANG JU.Combustion science and technology. 2006, Vol 178, Num 10-12, pp 2219-2247, issn 0010-2202, 29 p.Article

Identification of triple flame based on numerical data for laminar lifted flamesNODA, Susumu; YAMAMOTO, Shuhei.JSME international journal. Series B, fluids and thermal engineering. 2006, Vol 49, Num 3, pp 847-855, issn 1340-8054, 9 p.Article

Significance of DNS in combustion scienceTAKENO, Tadao; MIZOBUCHI, Yasuhiro.Comptes rendus. Mécanique. 2006, Vol 334, Num 8-9, pp 517-522, issn 1631-0721, 6 p.Conference Paper

Nonpremixed flamelet statistics at flame base of lifted turbulent jet nonpremixed flamesNODA, Susumu; MORI, Hisaya; HONGO, Yusuke et al.JSME international journal. Series B, fluids and thermal engineering. 2005, Vol 48, Num 1, pp 75-82, issn 1340-8054, 8 p.Article

Experimental study on stabilization of lifted swirl flames in a model GT combustorJANUS, B; DREIZLER, A; JANICKA, J et al.Flow, turbulence and combustion. 2005, Vol 75, Num 1-4, pp 293-315, issn 1386-6184, 23 p.Conference Paper

STABILIZATION OF LIFTED LAMINAR CO-FLOW FLAMES BY OXYGEN-ENRICHED AIRGILLON, Pascale; CHAHINE, May; SARH, Brahim et al.Combustion science and technology. 2012, Vol 184, Num 4-6, pp 556-571, issn 0010-2202, 16 p.Article

Flame propagation enhancement by plasma excitation of oxygen. Part II: Effects of O2(a1Δg)OMBRELLO, Timothy; SANG HEE WON; YIGUANG JU et al.Combustion and flame. 2010, Vol 157, Num 10, pp 1916-1928, issn 0010-2180, 13 p.Article

THE EFFECT OF UPSTREAM ANNULAR CAVITIES IN CIRCULAR JET BURNERS ON STABILITY CHARACTERISTICS OF JET DIFFUSION FLAMESCHIRANJEEVI VIDYASAGAR, G; RAGHAVAN, Vasudevan; SRINIVASAN, K et al.Combustion science and technology. 2011, Vol 183, Num 4-6, pp 614-626, issn 0010-2202, 13 p.Article

Two-dimensional direct numerical simulation of spray flames ― Part 2: Effects of ambient pressure and lift, and validity of flamelet modelKITANO, Tomoaki; NAKATANI, Tomoaki; KUROSE, Ryoichi et al.Fuel (Guildford). 2013, Vol 104, pp 526-535, issn 0016-2361, 10 p.Article

Predictive analysis of combined burner parameter effects on oxy-fuel flamesBOUSHAKI, T; GUESSASMA, S; SAUTET, J. C et al.Applied thermal engineering. 2011, Vol 31, Num 2-3, pp 202-212, issn 1359-4311, 11 p.Article

On the importance of temporal context in interpretation of flame discontinuitiesBOXX, I; HEEGER, C; GORDON, R et al.Combustion and flame. 2009, Vol 156, Num 1, pp 269-271, issn 0010-2180, 3 p.Article

On flame holes and local extinction in lifted-jet diffusion flamesLYONS, K. M; WATSON, K. A; CARTER, C. D et al.Combustion and flame. 2005, Vol 142, Num 3, pp 308-313, issn 0010-2180, 6 p.Article

Turbulence filter and POD analysis for velocity fields in lifted CH4-Air diffusion flamesKODAL, Ali; WATSON, Kyle A; ROBERTS, William L et al.Flow, turbulence and combustion. 2003, Vol 70, Num 1-4, pp 21-41, issn 1386-6184, 21 p.Article

Experimental Observation of Lifted Flames in a Heated and Diluted CoflowMEDWELL, Paul R; DALLY, Bassam B.Energy & fuels. 2012, Vol 26, Num SEPOCT, pp 5519-5527, issn 0887-0624, 9 p.Article

Computational Combustion Using High-Performance ComputingLUO, Kai H; KRONENBURG, Andreas.Flow, turbulence and combustion. 2011, Vol 87, Num 2-3, issn 1386-6184, 337 p.Serial Issue

The behaviour of lifted oxy-fuel flames in burners with separated jetsBOUSHAKI, T; SAUTET, J. C; SALENTEY, L et al.International communications in heat and mass transfer. 2007, Vol 34, Num 1, pp 8-18, issn 0735-1933, 11 p.Article

Modeling lifted methane jet fires using the boundary-layer equationsCUMBER, P. S; SPEARPOINT, M.Numerical heat transfer. Part B, fundamentals. 2006, Vol 49, Num 3, pp 239-258, issn 1040-7790, 20 p.Article

The role of precursors on the stabilisation of jet flames issuing into a hot environmentMEDWELL, Paul R; BLUNCK, David L; DALLY, Bassam B et al.Combustion and flame. 2014, Vol 161, Num 2, pp 465-474, issn 0010-2180, 10 p.Article

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