Chih-Jen Sung - Publications

Affiliations: 
EMC - Mechanical Engineering Case Western Reserve University, Cleveland Heights, OH, United States 
Area:
Mechanical Engineering, Chemical Engineering, Organic Chemistry

143 high-probability publications. We are testing a new system for linking publications to authors. You can help! If you notice any inaccuracies, please sign in and mark papers as correct or incorrect matches. If you identify any major omissions or other inaccuracies in the publication list, please let us know.

Year Citation  Score
2020 Wang X, Han X, Song H, Zhang C, Wang J, Hui X, Lin Y, Yang D, Sung C. Combustion Instabilities With Different Degrees of Premixedness in a Separated Dual-Swirl Burner Journal of Engineering For Gas Turbines and Power-Transactions of the Asme. 142. DOI: 10.1115/1.4047182  0.396
2020 Zhang C, Wang R, Hui X, Xue X, Lin Y, Sung C. Nonlinear Threshold Sooting Index Prediction Method for Surrogate Formulation Emulating Sooting Characteristics: A Case Study Using RP-3 Jet Fuels Energy & Fuels. 34: 9990-9999. DOI: 10.1021/Acs.Energyfuels.0C00921  0.426
2020 Al-Gharibeh E, Leathers R, Kumar K, Sung C. Ignition and combustion characteristics of decanoic acid derived alkyl esters in a fuel ignition tester Fuel. 276: 117982. DOI: 10.1016/J.Fuel.2020.117982  0.496
2020 Wang M, Kukkadapu G, Zhang K, Wagnon SW, Mehl M, Pitz WJ, Westbrook CK, Sung C. Autoignition of CRC diesel surrogates at low temperature combustion conditions: Rapid compression machine experiments and modeling Combustion and Flame. 219: 178-197. DOI: 10.1016/J.Combustflame.2020.05.017  0.504
2020 Fang R, Kukkadapu G, Wang M, Wagnon SW, Zhang K, Mehl M, Westbrook CK, Pitz WJ, Sung C. Fuel molecular structure effect on autoignition of highly branched iso-alkanes at low-to-intermediate temperatures: Iso-octane versus iso-dodecane Combustion and Flame. 214: 152-166. DOI: 10.1016/J.Combustflame.2019.12.037  0.38
2020 Han X, Laera D, Yang D, Zhang C, Wang J, Hui X, Lin Y, Morgans AS, Sung C. Flame interactions in a stratified swirl burner: Flame stabilization, combustion instabilities and beating oscillations Combustion and Flame. 212: 500-509. DOI: 10.1016/J.Combustflame.2019.11.020  0.454
2020 Ren X, Brady KB, Xue X, Sung C, Mongia HC. Experimental investigation of lean-dome high-airflow airblast pilot mixers' operability, emissions, and dynamics Aerospace Science and Technology. 100: 105829. DOI: 10.1016/J.Ast.2020.105829  0.429
2019 Hartwig J, Mittal G, Sung CJ. EXPRESS: Acetone Tracer Laser Induced Fluorescence at 282 nm Excitation as a Diagnostic Tool in Elevated Pressure and Temperature Systems. Applied Spectroscopy. 3702819830447. PMID 30777449 DOI: 10.1177/0003702819830447  0.365
2019 Han X, Laera D, Morgans A, Sung C, Hui X, Lin Y. Flame macrostructures and thermoacoustic instabilities in stratified swirling flames Proceedings of the Combustion Institute. 37: 5377-5384. DOI: 10.1016/J.PROCI.2018.06.147  0.319
2019 Hui X, Zheng D, Zhang C, Xue X, Sung C. Effects of hydrogen peroxide addition on two-stage ignition characteristics of n-heptane/air mixtures International Journal of Hydrogen Energy. 44: 24312-24320. DOI: 10.1016/J.Ijhydene.2019.07.135  0.453
2019 Zhang C, Mi X, Hui X, Chen L, Lin Y, Mongia HC, Sung C. Characterizing particulate matter emissions in an aviation kerosene-fueled model combustor at elevated pressures and temperatures Fuel. 241: 227-233. DOI: 10.1016/J.Fuel.2018.12.024  0.411
2019 Xue X, Hui X, Vannorsdall P, Singh P, Sung C. The blending effect on the sooting tendencies of alternative/conventional jet fuel blends in non-premixed flames Fuel. 237: 648-657. DOI: 10.1016/J.Fuel.2018.09.157  0.457
2019 Saggese C, Singh AV, Xue X, Chu C, Kholghy MR, Zhang T, Camacho J, Giaccai J, Miller JH, Thomson MJ, Sung C, Wang H. The distillation curve and sooting propensity of a typical jet fuel Fuel. 235: 350-362. DOI: 10.1016/J.Fuel.2018.07.099  0.473
2019 Han X, Laera D, Morgans AS, Lin Y, Zhang C, Hui X, Sung C. Inlet temperature driven supercritical bifurcation of combustion instabilities in a lean premixed prevaporized combustor Experimental Thermal and Fluid Science. 109: 109857. DOI: 10.1016/J.Expthermflusci.2019.109857  0.403
2019 Ren X, Xue X, Brady KB, Sung C, Mongia HC. The impact of swirling flow strength on lean-dome LDI pilot mixers’ operability and emissions Experimental Thermal and Fluid Science. 109: 109840. DOI: 10.1016/J.Expthermflusci.2019.109840  0.41
2018 Han X, Laera D, Morgans AS, Lin Y, Sung C. The Effect of Stratification Ratio on the Macrostructure of Stratified Swirl Flames: Experimental and Numerical Study Journal of Engineering For Gas Turbines and Power. 140. DOI: 10.1115/1.4040735  0.478
2018 Vuilleumier D, Atef N, Kukkadapu G, Wolk B, Selim H, Kozarac D, Saxena S, Wang Z, Sung C, Dibble R, Sarathy SM. The Influence of Intake Pressure and Ethanol Addition to Gasoline on Single- and Dual-Stage Autoignition in an HCCI Engine Energy & Fuels. 32: 9822-9837. DOI: 10.1021/Acs.Energyfuels.8B00887  0.415
2018 Xu Q, Leathers R, Savage D, Kumar K, Sung C. Influence of Blendingn-Butanol with Isooctane andn-Heptane on Ignition Delay Times in a Fuel Ignition Tester Energy & Fuels. 32: 6239-6251. DOI: 10.1021/Acs.Energyfuels.7B02127  0.431
2018 Ren X, Xue X, Brady KB, Sung C, Mongia HC. Fundamental investigations for lowering emissions and improving operability Propulsion and Power Research. 7: 197-204. DOI: 10.1016/J.Jppr.2018.07.001  0.397
2018 Gribi B, Lin Y, Hui X, Zhang C, Sung C. Effects of hydrogen peroxide addition on combustion characteristics of n-decane/air mixtures Fuel. 223: 324-333. DOI: 10.1016/J.Fuel.2018.03.054  0.418
2018 Weber BW, Bunnell JA, Kumar K, Sung C. Experiments and modeling of the autoignition of methyl pentanoate at low to intermediate temperatures and elevated pressures in a rapid compression machine Fuel. 212: 479-486. DOI: 10.1016/J.Fuel.2017.10.037  0.454
2018 Wang H, Fang R, Weber BW, Sung C. An experimental and modeling study of dimethyl ether/methanol blends autoignition at low temperature Combustion and Flame. 198: 89-99. DOI: 10.1016/J.Combustflame.2018.09.012  0.507
2018 Curtis NJ, Niemeyer KE, Sung C. Using SIMD and SIMT vectorization to evaluate sparse chemical kinetic Jacobian matrices and thermochemical source terms Combustion and Flame. 198: 186-204. DOI: 10.1016/J.Combustflame.2018.09.008  0.336
2018 Wang M, Zhang K, Kukkadapu G, Wagnon SW, Mehl M, Pitz WJ, Sung C. Autoignition of trans-decalin, a diesel surrogate compound: Rapid compression machine experiments and chemical kinetic modeling Combustion and Flame. 194: 152-163. DOI: 10.1016/J.Combustflame.2018.04.019  0.504
2018 Xue X, Singh P, Sung C. Soot formation in counterflow non-premixed ethylene flames at elevated pressures Combustion and Flame. 195: 253-266. DOI: 10.1016/J.Combustflame.2018.04.005  0.46
2018 Kumar K, Sung C, Weber BW, Bunnell JA. Autoignition of methyl propanoate and its comparisons with methyl ethanoate and methyl butanoate Combustion and Flame. 188: 116-128. DOI: 10.1016/J.Combustflame.2017.09.027  0.372
2018 Kukkadapu G, Sung C. Autoignition study of binary blends of n-dodecane/1-methylnaphthalene and iso-cetane/1-methylnaphthalene Combustion and Flame. 189: 367-377. DOI: 10.1016/J.Combustflame.2017.07.025  0.469
2017 Hartwig J, Mittal G, Kumar K, Sung CJ. EXPRESS: System Validation Experiments for Obtaining Tracer Laser Induced Fluorescence Data at Elevated Pressure and Temperature. Applied Spectroscopy. 3702817746409. PMID 29164904 DOI: 10.1177/0003702817746409  0.3
2017 Peng Z, Megaritis T, Sung C, Yaga M, Hellier P, Tian G. Advanced Engine Flows and Combustion Journal of Combustion. 2017: 1-3. DOI: 10.1155/2017/9285097  0.32
2017 Xue X, Hui X, Singh P, Sung C. Soot formation in non-premixed counterflow flames of conventional and alternative jet fuels Fuel. 210: 343-351. DOI: 10.1016/J.Fuel.2017.08.079  0.475
2017 Niemeyer KE, Curtis NJ, Sung C. pyJac: Analytical Jacobian generator for chemical kinetics Computer Physics Communications. 215: 188-203. DOI: 10.1016/J.Cpc.2017.02.004  0.339
2017 Atef N, Kukkadapu G, Mohamed SY, Rashidi MA, Banyon C, Mehl M, Heufer KA, Nasir EF, Alfazazi A, Das AK, Westbrook CK, Pitz WJ, Lu T, Farooq A, Sung C, et al. A comprehensive iso-octane combustion model with improved thermochemistry and chemical kinetics Combustion and Flame. 178: 111-134. DOI: 10.1016/J.Combustflame.2016.12.029  0.485
2017 Hartwig J, Mittal G, Kumar K, Sung C. Acetone photophysics at 282 nm excitation at elevated pressure and temperature. I: absorption and fluorescence experiments Applied Physics B. 123. DOI: 10.1007/S00340-017-6774-Z  0.38
2017 Hartwig J, Raju M, Sung C. Acetone photophysics at 282 nm excitation at elevated pressure and temperature. II: Fluorescence modeling Applied Physics B. 123. DOI: 10.1007/S00340-017-6770-3  0.396
2016 Hui X, Niemeyer KE, Brady KB, Sung C. Reduced Chemistry for Butanol Isomers at Engine-Relevant Conditions Energy & Fuels. 31: 867-881. DOI: 10.1021/Acs.Energyfuels.6B01857  0.452
2016 Kukkadapu G, Sung C. Autoignition Study of 1-Methylnaphthalene in a Rapid Compression Machine Energy & Fuels. 31: 854-866. DOI: 10.1021/Acs.Energyfuels.6B01628  0.467
2016 Zhang C, Hui X, Lin Y, Sung CJ. Recent development in studies of alternative jet fuel combustion: Progress, challenges, and opportunities Renewable and Sustainable Energy Reviews. 54: 120-138. DOI: 10.1016/J.Rser.2015.09.056  0.443
2016 Samimi Abianeh O, Curtis N, Sung CJ. Determination of modeled luminosity-based and pressure-based ignition delay times of turbulent spray combustion International Journal of Heat and Mass Transfer. DOI: 10.1016/J.Ijheatmasstransfer.2016.06.067  0.511
2016 Singh P, Sung CJ. PAH formation in counterflow non-premixed flames of butane and butanol isomers Combustion and Flame. 170: 91-110. DOI: 10.1016/J.Combustflame.2016.05.009  0.415
2016 Kumar K, Sung CJ. Autoignition of methyl butanoate under engine relevant conditions Combustion and Flame. 171: 1-14. DOI: 10.1016/J.Combustflame.2016.04.011  0.514
2016 Sarathy SM, Kukkadapu G, Mehl M, Javed T, Ahmed A, Naser N, Tekawade A, Kosiba G, AlAbbad M, Singh E, Park S, Rashidi MA, Chung SH, Roberts WL, Oehlschlaeger MA, ... Sung CJ, et al. Compositional effects on the ignition of FACE gasolines Combustion and Flame. 169: 171-193. DOI: 10.1016/J.Combustflame.2016.04.010  0.504
2016 Kukkadapu G, Sung CJ. Autoignition study of ULSD#2 and FD9A diesel blends Combustion and Flame. 166: 45-54. DOI: 10.1016/J.Combustflame.2015.12.022  0.53
2016 Singh P, Hui X, Sung CJ. Soot formation in non-premixed counterflow flames of butane and butanol isomers Combustion and Flame. 164: 167-182. DOI: 10.1016/J.Combustflame.2015.11.015  0.499
2016 Brady KB, Hui X, Sung CJ. Comparative study of the counterflow forced ignition of the butanol isomers at atmospheric and elevated pressures Combustion and Flame. 165: 34-49. DOI: 10.1016/J.Combustflame.2015.09.026  0.488
2015 Niemeyer KE, Sung C. Reduced Chemistry for a Gasoline Surrogate Valid at Engine-Relevant Conditions Energy & Fuels. 29: 1172-1185. DOI: 10.1021/Ef5022126  0.357
2015 Brady KB, Hui X, Sung CJ. Effect of hydrogen addition on the counterflow ignition of n-butanol at atmospheric and elevated pressures International Journal of Hydrogen Energy. 40: 16618-16633. DOI: 10.1016/J.Ijhydene.2015.09.103  0.425
2015 Kukkadapu G, Weber BW, Sung CJ. Autoignition study of tetralin in a rapid compression machine at elevated pressures and low-to-intermediate temperatures Fuel. 159: 436-445. DOI: 10.1016/J.Fuel.2015.06.093  0.522
2015 Dames EE, Rosen AS, Weber BW, Gao CW, Sung CJ, Green WH. A detailed combined experimental and theoretical study on dimethyl ether/propane blended oxidation Combustion and Flame. DOI: 10.1016/J.Combustflame.2016.02.021  0.441
2015 Abianeh OS, Oehlschlaeger MA, Sung CJ. A surrogate mixture and kinetic mechanism for emulating the evaporation and autoignition characteristics of gasoline fuel Combustion and Flame. DOI: 10.1016/J.Combustflame.2015.07.015  0.482
2015 Brady KB, Hui X, Sung CJ, Niemeyer KE. Counterflow ignition of n-butanol at atmospheric and elevated pressures Combustion and Flame. DOI: 10.1016/J.Combustflame.2015.06.017  0.481
2015 Weber BW, Sung CJ, Renfro MW. On the uncertainty of temperature estimation in a rapid compression machine Combustion and Flame. 162: 2518-2528. DOI: 10.1016/J.Combustflame.2015.03.001  0.384
2015 Kumar K, Zhang Y, Sung CJ, Pitz WJ. Autoignition response of n-butanol and its blends with primary reference fuel constituents of gasoline Combustion and Flame. 162: 2466-2479. DOI: 10.1016/J.Combustflame.2015.02.014  0.502
2015 Kukkadapu G, Kumar K, Sung CJ, Mehl M, Pitz WJ. Autoignition of gasoline surrogates at low temperature combustion conditions Combustion and Flame. 162: 2272-2285. DOI: 10.1016/J.Combustflame.2015.01.025  0.532
2015 Burke SM, Burke U, Mc Donagh R, Mathieu O, Osorio I, Keesee C, Morones A, Petersen EL, Wang W, DeVerter TA, Oehlschlaeger MA, Rhodes B, Hanson RK, Davidson DF, Weber BW, ... Sung CJ, et al. An experimental and modeling study of propene oxidation. Part 2: Ignition delay time and flame speed measurements Combustion and Flame. 162: 296-314. DOI: 10.1016/J.Combustflame.2014.07.032  0.512
2015 Zhong F, Ma S, Zhang X, Sung CJ, Niemeyer KE. Development of efficient and accurate skeletal mechanisms for hydrocarbon fuels and kerosene surrogate Acta Mechanica Sinica/Lixue Xuebao. DOI: 10.1007/S10409-015-0434-5  0.381
2014 Niemeyer KE, Sung C. Accelerating moderately stiff chemical kinetics in reactive-flow simulations using GPUs Journal of Computational Physics. 256: 854-871. DOI: 10.1016/J.Jcp.2013.09.025  0.323
2014 Niemeyer KE, Sung C. Mechanism reduction for multicomponent surrogates: A case study using toluene reference fuels Combustion and Flame. 161: 2752-2764. DOI: 10.1016/J.Combustflame.2014.05.001  0.457
2014 Hui X, Zhang C, Xia M, Sung C. Effects of hydrogen addition on combustion characteristics of n-decane/air mixtures Combustion and Flame. 161: 2252-2262. DOI: 10.1016/J.Combustflame.2014.03.007  0.441
2014 Weber BW, Pitz WJ, Mehl M, Silke EJ, Davis AC, Sung CJ. Experiments and modeling of the autoignition of methylcyclohexane at high pressure Combustion and Flame. 161: 1972-1983. DOI: 10.1016/J.Combustflame.2014.01.018  0.535
2013 Zhong F, Chen L, Li F, Zhang X, Sung C. Numerical Simulation of Ignition and Combustion of Ethylene in a Supersonic Model Combustor with a Reduced Kinetic Mechanism Combustion Science and Technology. 185: 548-563. DOI: 10.1080/00102202.2012.730080  0.503
2013 Weber BW, Sung C. Comparative Autoignition Trends in Butanol Isomers at Elevated Pressure Energy & Fuels. 27: 1688-1698. DOI: 10.1021/Ef302195C  0.357
2013 Bartkus TP, T'ien JS, Sung C. A semi-global reaction rate model based on experimental data for the self-hydrolysis kinetics of aqueous sodium borohydride International Journal of Hydrogen Energy. 38: 4024-4033. DOI: 10.1016/J.Ijhydene.2013.01.041  0.314
2013 Hui X, Sung C. Laminar flame speeds of transportation-relevant hydrocarbons and jet fuels at elevated temperatures and pressures Fuel. 109: 191-200. DOI: 10.1016/J.Fuel.2012.12.084  0.528
2013 Mani Sarathy S, Park S, Weber BW, Wang W, Veloo PS, Davis AC, Togbe C, Westbrook CK, Park O, Dayma G, Luo Z, Oehlschlaeger MA, Egolfopoulos FN, Lu T, Pitz WJ, ... Sung CJ, et al. A comprehensive experimental and modeling study of iso-pentanol combustion Combustion and Flame. 160: 2712-2728. DOI: 10.1016/J.Combustflame.2013.06.022  0.569
2013 Kéromnès A, Metcalfe WK, Heufer KA, Donohoe N, Das AK, Sung CJ, Herzler J, Naumann C, Griebel P, Mathieu O, Krejci MC, Petersen EL, Pitz WJ, Curran HJ. An experimental and detailed chemical kinetic modeling study of hydrogen and syngas mixture oxidation at elevated pressures Combustion and Flame. 160: 995-1011. DOI: 10.1016/J.Combustflame.2013.01.001  0.589
2012 Uddi M, Das AK, Sung CJ. Temperature measurements in a rapid compression machine using mid-infrared H2O absorption spectroscopy near 7.6 μm. Applied Optics. 51: 5464-76. PMID 22859037 DOI: 10.1364/Ao.51.005464  0.569
2012 Zhang C, Xu Q, Lin Y, Zhu J, Yuan Y, Sung C. Experimental Characterization of Fuel-Air Mixing in a Multihole Tube Journal of Engineering For Gas Turbines and Power. 134. DOI: 10.1115/1.4004437  0.463
2012 Tsujimura T, Pitz WJ, Gillespie F, Curran HJ, Weber BW, Zhang Y, Sung C. Development of Isopentanol Reaction Mechanism Reproducing Autoignition Character at High and Low Temperatures Energy & Fuels. 26: 4871-4886. DOI: 10.1021/Ef300879K  0.381
2012 Brady K, Sung C, T’ien J. Dispersion and catalytic ignition of hydrogen leaks within enclosed spaces International Journal of Hydrogen Energy. 37: 10405-10415. DOI: 10.1016/J.Ijhydene.2012.03.146  0.362
2012 Das AK, Sung C, Zhang Y, Mittal G. Ignition delay study of moist hydrogen/oxidizer mixtures using a rapid compression machine International Journal of Hydrogen Energy. 37: 6901-6911. DOI: 10.1016/J.Ijhydene.2012.01.111  0.611
2012 Hui X, Kumar K, Sung C, Edwards T, Gardner D. Experimental studies on the combustion characteristics of alternative jet fuels Fuel. 98: 176-182. DOI: 10.1016/J.Fuel.2012.03.040  0.53
2012 Hui X, Das AK, Kumar K, Sung CJ, Dooley S, Dryer FL. Laminar flame speeds and extinction stretch rates of selected aromatic hydrocarbons Fuel. 97: 695-702. DOI: 10.1016/J.Fuel.2012.02.045  0.668
2012 Mittal G, Raju MP, Sung CJ. Vortex formation in a rapid compression machine: Influence of physical and operating parameters Fuel. 94: 409-417. DOI: 10.1016/J.Fuel.2011.08.034  0.394
2012 Das AK, Uddi M, Sung C. Two-line thermometry and H2O measurement for reactive mixtures in rapid compression machine near 7.6μm Combustion and Flame. 159: 3493-3501. DOI: 10.1016/J.Combustflame.2012.06.020  0.574
2012 Kukkadapu G, Kumar K, Sung C, Mehl M, Pitz WJ. Experimental and surrogate modeling study of gasoline ignition in a rapid compression machine Combustion and Flame. 159: 3066-3078. DOI: 10.1016/J.Combustflame.2012.05.008  0.508
2012 Xin Y, Sung CJ, Law CK. A mechanistic evaluation of Soret diffusion in heptane/air flames Combustion and Flame. 159: 2345-2351. DOI: 10.1016/J.Combustflame.2012.03.005  0.342
2012 Dooley S, Won SH, Heyne J, Farouk TI, Ju Y, Dryer FL, Kumar K, Hui X, Sung CJ, Wang H, Oehlschlaeger MA, Iyer V, Iyer S, Litzinger TA, Santoro RJ, et al. The experimental evaluation of a methodology for surrogate fuel formulation to emulate gas phase combustion kinetic phenomena Combustion and Flame. 159: 1444-1466. DOI: 10.1016/J.Combustflame.2011.11.002  0.417
2011 Kumar K, Sung C, Hui X. Laminar flame speeds and extinction limits of conventional and alternative jet fuels Fuel. 90: 1004-1011. DOI: 10.1016/J.Fuel.2010.11.022  0.515
2011 Weber BW, Kumar K, Zhang Y, Sung C. Autoignition of n-butanol at elevated pressure and low-to-intermediate temperature Combustion and Flame. 158: 809-819. DOI: 10.1016/J.Combustflame.2011.02.005  0.536
2011 Das AK, Kumar K, Sung C. Laminar flame speeds of moist syngas mixtures Combustion and Flame. 158: 345-353. DOI: 10.1016/J.Combustflame.2010.09.004  0.628
2011 Kumar K, Sung C. Autoignition of methanol: Experiments and computations International Journal of Chemical Kinetics. 43: 175-184. DOI: 10.1002/Kin.20546  0.45
2010 Kumar K, Sung C. Flame Propagation and Extinction Characteristics of Neat Surrogate Fuel Components Energy & Fuels. 24: 3840-3849. DOI: 10.1021/Ef100074V  0.522
2010 Brady K, Sung C, T’ien J. Ignition propensity of hydrogen/air mixtures impinging on a platinum stagnation surface International Journal of Hydrogen Energy. 35: 11412-11423. DOI: 10.1016/J.Ijhydene.2010.07.105  0.357
2010 Kumar K, Sung C. A comparative experimental study of the autoignition characteristics of alternative and conventional jet fuel/oxidizer mixtures Fuel. 89: 2853-2863. DOI: 10.1016/J.Fuel.2010.05.021  0.519
2010 Dooley S, Won SH, Chaos M, Heyne J, Ju Y, Dryer FL, Kumar K, Sung CJ, Wang H, Oehlschlaeger MA, Santoro RJ, Litzinger TA. A jet fuel surrogate formulated by real fuel properties Combustion and Flame. 157: 2333-2339. DOI: 10.1016/J.Combustflame.2010.07.001  0.532
2010 Mittal G, Raju MP, Sung CJ. CFD modeling of two-stage ignition in a rapid compression machine: Assessment of zero-dimensional approach Combustion and Flame. 157: 1316-1324. DOI: 10.1016/J.Combustflame.2010.02.019  0.427
2010 Kumar K, Sung C. An experimental study of the autoignition characteristics of conventional jet fuel/oxidizer mixtures: Jet-A and JP-8 Combustion and Flame. 157: 676-685. DOI: 10.1016/J.Combustflame.2010.01.001  0.485
2010 Niemeyer KE, Sung C, Raju MP. Skeletal mechanism generation for surrogate fuels using directed relation graph with error propagation and sensitivity analysis Combustion and Flame. 157: 1760-1770. DOI: 10.1016/J.Combustflame.2009.12.022  0.385
2010 Yang F, Law CK, Sung CJ, Zhang HQ. A mechanistic study of Soret diffusion in hydrogen-air flames Combustion and Flame. 157: 192-200. DOI: 10.1016/J.Combustflame.2009.09.018  0.349
2010 Zhong F, Fan X, Yu G, Li J, Sung C. Performance of supersonic model combustors with staged injections of supercritical aviation kerosene Acta Mechanica Sinica. 26: 661-668. DOI: 10.1007/S10409-010-0367-Y  0.447
2009 Mento CA, Sung C, Ibarreta AF, Schneider SJ. Catalyzed Ignition of Using Methane/Hydrogen Fuel in a Microtube for Microthruster Applications Journal of Propulsion and Power. 25: 1203-1210. DOI: 10.2514/1.42592  0.463
2009 Zhong F, Fan X, Yu G, Li J, Sung C. Heat Transfer of Aviation Kerosene at Supercritical Conditions Journal of Thermophysics and Heat Transfer. 23: 543-550. DOI: 10.2514/1.41619  0.38
2009 Mielke AF, Elam KA, Sung C. Multi-Property Measurements at High Sampling Rates Using Rayleigh Scattering Aiaa Journal. 47: 850-862. DOI: 10.2514/1.37369  0.351
2009 Mittal G, Sung CJ. Autoignition of methylcyclohexane at elevated pressures Combustion and Flame. 156: 1852-1855. DOI: 10.1016/J.Combustflame.2009.05.009  0.49
2009 Kumar K, Mittal G, Sung CJ. Autoignition of n-decane under elevated pressure and low-to-intermediate temperature conditions Combustion and Flame. 156: 1278-1288. DOI: 10.1016/J.Combustflame.2009.01.009  0.478
2008 Sung C, Law CK. Fundamental Combustion Properties of H2/CO Mixtures: Ignition and Flame Propagation at Elevated Pressures Combustion Science and Technology. 180: 1097-1116. DOI: 10.1080/00102200801963169  0.501
2008 Mittal G, Chaos M, Sung CJ, Dryer FL. Dimethyl ether autoignition in a rapid compression machine: Experiments and chemical kinetic modeling Fuel Processing Technology. 89: 1244-1254. DOI: 10.1016/J.Fuproc.2008.05.021  0.482
2008 Mittal G, Raju MP, Sung CJ. Computational fluid dynamics modeling of hydrogen ignition in a rapid compression machine Combustion and Flame. 155: 417-428. DOI: 10.1016/J.Combustflame.2008.06.006  0.376
2008 Mittal G, Sung CJ. Homogeneous charge compression ignition of binary fuel blends Combustion and Flame. 155: 431-439. DOI: 10.1016/J.Combustflame.2008.05.003  0.522
2008 KUMAR K, MITTAL G, SUNG C, LAW C. An experimental investigation of ethylene/O2/diluent mixtures: Laminar flame speeds with preheat and ignition delays at high pressures Combustion and Flame. 153: 343-354. DOI: 10.1016/J.Combustflame.2007.11.012  0.53
2007 You X, Wang H, Goos E, Sung CJ, Klippenstein SJ. Reaction kinetics of CO + HO(2) --> products: ab initio transition state theory study with master equation modeling. The Journal of Physical Chemistry. A. 111: 4031-42. PMID 17388389 DOI: 10.1021/Jp067597A  0.32
2007 HUANG Y, SUNG∗ C, KUMAR K. ULTRA-DILUTE COMBUSTION OF PRIMARY REFERENCE FUELS Combustion Science and Technology. 179: 2361-2379. DOI: 10.1080/00102200701484290  0.309
2007 FAN X, YU G, LI J, YUE L, ZHANG X, SUNG C. EFFECTS OF ENTRY CONDITIONS ON CRACKED KEROSENE-FUELED SUPERSONIC COMBUSTOR PERFORMANCE Combustion Science and Technology. 179: 2199-2217. DOI: 10.1080/00102200701386198  0.384
2007 Mittal G, Sung CJ. A rapid compression machine for chemical kinetics studies at elevated pressures and temperatures Combustion Science and Technology. 179: 497-530. DOI: 10.1080/00102200600671898  0.445
2007 Ibarreta AF, Sung C, Wang H. Experimental characterization of premixed spherical ethylene/air flames under sooting conditions Proceedings of the Combustion Institute. 31: 1047-1054. DOI: 10.1016/j.proci.2006.08.029  0.338
2007 Mittal G, Sung CJ, Fairweather M, Tomlin AS, Griffiths JF, Hughes KJ. Significance of the HO2 + CO reaction during the combustion of CO + H2 mixtures at high pressures Proceedings of the Combustion Institute. 31: 419-427. DOI: 10.1016/j.proci.2006.07.068  0.339
2007 Kumar K, Sung C. Laminar flame speeds and extinction limits of preheated n-decane/O2/N2 and n-dodecane/O2/N2 mixtures Combustion and Flame. 151: 209-224. DOI: 10.1016/J.Combustflame.2007.05.002  0.45
2007 Mittal G, Sung CJ. Autoignition of toluene and benzene at elevated pressures in a rapid compression machine Combustion and Flame. 150: 355-368. DOI: 10.1016/J.Combustflame.2007.04.014  0.505
2007 Han B, Ibarreta AF, Sung C, T'ien JS. Structure of low-stretch methane nonpremixed flames Combustion and Flame. 149: 173-190. DOI: 10.1016/J.Combustflame.2006.11.008  0.664
2006 Volchko SJ, Sung C, Huang Y, Schneider SJ. Catalytic Combustion of Rich Methane/Oxygen Mixtures for Micropropulsion Applications Journal of Propulsion and Power. 22: 684-693. DOI: 10.2514/1.19809  0.45
2006 Fan X, Yu G, Li J, Zhang X, Sung C. Investigation of Vaporized Kerosene Injection and Combustion in a Supersonic Model Combustor Journal of Propulsion and Power. 22: 103-110. DOI: 10.2514/1.15427  0.503
2006 IBARRETA A, SUNG C. Optimization of Jet-A fuel reforming for aerospace applications International Journal of Hydrogen Energy. 31: 1066-1078. DOI: 10.1016/J.Ijhydene.2005.12.017  0.425
2006 Mittal G, Sung CJ. Aerodynamics inside a rapid compression machine Combustion and Flame. 145: 160-180. DOI: 10.1016/J.Combustflame.2005.10.019  0.41
2006 Mittal G, Sung CJ, Yetter RA. Autoignition of H 2/CO at elevated pressures in a rapid compression machine International Journal of Chemical Kinetics. 38: 516-529. DOI: 10.1002/Kin.20180  0.412
2005 Ibarreta AF, Sung CJ. Flame temperature and location measurements of sooting premixed Bunsen flames by rainbow schlieren deflectometry. Applied Optics. 44: 3565-75. PMID 16007857 DOI: 10.1364/Ao.44.003565  0.482
2005 Perkins HD, Sung C. Effects of Fuel Distribution on Detonation Tube Performance Journal of Propulsion and Power. 21: 539-545. DOI: 10.2514/1.2253  0.444
2005 Nanduri JR, Sung CJ, T'ien JS. Structure and dynamic response of radiative diffusion flames Combustion Theory and Modelling. 9: 515-548. DOI: 10.1080/13647830500277373  0.745
2005 Ibarreta AF, Sung C, Hirasawa T, Wang H. Burning velocity measurements of microgravity spherical sooting premixed flames using rainbow Schlieren deflectometry Combustion and Flame. 140: 93-102. DOI: 10.1016/J.Combustflame.2004.10.007  0.486
2004 Hirasawa T, Sung C, Yang Z, Joshi A, Wang H. Effect of ferrocene addition on sooting limits in laminar premixed ethylene–oxygen–argon flames Combustion and Flame. 139: 288-299. DOI: 10.1016/J.Combustflame.2004.09.002  0.478
2004 HUANG Y, SUNG C, ENG J. Laminar flame speeds of primary reference fuels and reformer gas mixtures Combustion and Flame. 139: 239-251. DOI: 10.1016/j.combustflame.2004.08.011  0.313
2003 Yu G, Li JG, Chang XY, Chen LH, Sung CJ. Fuel Injection and Flame Stabilization in a Liquid-Kerosene-Fueled Supersonic Combustor Journal of Propulsion and Power. 19: 885-893. DOI: 10.2514/2.6179  0.315
2002 Yu G, Li JG, Zhang XY, Chen LH, Han B, Sung CJ. Experimental Investigation on Flameholding Mechanism and Combustion Performance in Hydrogen-Fueled Supersonic Combustors Combustion Science and Technology. 174: 1-27. DOI: 10.1080/713712992  0.32
2002 Sung C, Makino A, Law C. On stretch-affected pulsating instability in rich hydrogen/air flames: asymptotic analysis and computation Combustion and Flame. 128: 422-434. DOI: 10.1016/S0010-2180(01)00361-3  0.366
2002 Mosbacher DM, Wehrmeyer JA, Pitz RW, Sung CJ, Byrd JL. Experimental and numerical investigation of premixed tubular flames Proceedings of the Combustion Institute. 29: 1479-1486.  0.393
2001 Sung C, Huang Y, Eng J. Effects of reformer gas addition on the laminar flame speeds and flammability limits of n-butane and iso-butane flames Combustion and Flame. 126: 1699-1713. DOI: 10.1016/S0010-2180(01)00284-X  0.301
2001 Tse SD, Zhu D, Sung C, Ju Y, Law CK. Microgravity burner-generated spherical diffusion flames: experiment and computation‡‡Currently at Department of Mechanical and Aerospace Engineering, Case Western Reserve University, Cleveland, OH 44106. Combustion and Flame. 125: 1265-1278. DOI: 10.1016/S0010-2180(01)00247-4  0.479
2001 Christiansen E, Law C, Sung C. Steady and pulsating propagation and extinction of rich hydrogen/air flames at elevated pressures Combustion and Flame. 124: 35-49. DOI: 10.1016/S0010-2180(00)00172-3  0.32
2001 Wehrmeyer JA, Osborne RJ, Mosbacher DM, Cheng Z, Pitz RW, Sung CJ. Investigation of partially-premtxed propane-air flames with flame curvature 39th Aerospace Sciences Meeting and Exhibit 0.398
2000 SUNG C, LAW C, CHEN J. Further Validation of an Augmented Reduced Mechanism for Methane Oxidation: Comparison of Global Parameters and Detailed Structure Combustion Science and Technology. 156: 201-220. DOI: 10.1080/00102200008947303  0.331
2000 Law C, Sung C. Structure, aerodynamics, and geometry of premixed flamelets Progress in Energy and Combustion Science. 26: 459-505. DOI: 10.1016/S0360-1285(00)00018-6  0.348
2000 Sung C, Law C. Structural sensitivity, response, and extinction of diffusion and premixed flames in oscillating counterflow Combustion and Flame. 123: 375-388. DOI: 10.1016/S0010-2180(00)00175-9  0.331
1999 Sung CJ, Li JG, Yu G, Law CK. Chemical Kinetics and Self-Ignition in a Model Supersonic Hydrogen-Air Combustor Aiaa Journal. 37: 208-214. DOI: 10.2514/2.715  0.379
1999 Shih H, Bedir H, T’ien JS, Sung C. Computed Flammability Limits of Opposed-Jet H/O/CO Diffusion Flames at Low Pressure Journal of Propulsion and Power. 15: 903-908. DOI: 10.2514/2.5514  0.348
1999 Sun C, Sung C, He L, Law C. Dynamics of weakly stretched flames: quantitative description and extraction of global flame parameters Combustion and Flame. 118: 108-128. DOI: 10.1016/S0010-2180(98)00137-0  0.381
1997 Law C, Sung C, Sun C. ON THE AERODYNAMICS OF FLAME SURFACES Annual Review of Heat Transfer. 8: 93-151. DOI: 10.1615/Annualrevheattransfer.V8.50  0.331
1997 Wang H, Sung C, Law C. On mild and vigorous oxidation of mixtures of chlorinated hydrocarbons in droplet burning Combustion and Flame. 110: 222-238. DOI: 10.1016/S0010-2180(97)00066-7  0.387
1996 Sun C, Sung C, Wang H, Law C. On the structure of nonsooting counterflow ethylene and acetylene diffusion flames Combustion and Flame. 107: 321-335. DOI: 10.1016/S0010-2180(96)00055-7  0.386
1996 Sung C, Liu J, Law C. On the scalar structure of nonequidiffusive premixed flames in counterflow Combustion and Flame. 106: 168-183. DOI: 10.1016/0010-2180(95)00249-9  0.372
1996 Sung C, Kistler J, Nishioka M, Law C. Further studies on effects of thermophoresis on seeding particles in LDV measurements of strained flames Combustion and Flame. 105: 189-201. DOI: 10.1016/0010-2180(95)00189-1  0.312
1995 Sung C, Trujillo J, Law C. On non-Huygens flame configuration in stagnation flow Combustion and Flame. 103: 247-251. DOI: 10.1016/0010-2180(95)00158-3  0.33
1995 Sung C, Liu J, Law C. Structural response of counterflow diffusion flames to strain rate variations Combustion and Flame. 102: 481-492. DOI: 10.1016/0010-2180(95)00041-4  0.326
1994 SUNG CJ, YU KM, LAW CK. On the Geometry and Burning Intensity of Bunsen Flames Combustion Science and Technology. 100: 245-270. DOI: 10.1080/00102209408935455  0.316
1994 Law C, Sung C, Yu G, Axelbaum R. On the structural sensitivity of purely strained planar premixed flames to strain rate variations Combustion and Flame. 98: 139-154. DOI: 10.1016/0010-2180(94)90204-6  0.316
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