当前位置: X-MOL首页全球导师 国内导师 › 惠鑫

个人简介

惠鑫,北航副教授,博士生导师,航空发动机研究院中英联合科教中心主任,北航优秀硕士论文指导教师。本科毕业于清华大学,硕士毕业于中国科学院,博士毕业于美国凯斯西储大学。主要研究方向包括:低碳可持续航空燃料燃烧与应用、层流与湍流火焰燃烧、污染物生成机理与控制、燃料化学反应动力学、清洁高效燃烧技术、燃烧数值仿真等。近年来主持国防科技重点实验室基金、国家自然科学基金青年基金、国家重大研究计划“两机”专项基础研究项目专题、民机科研重大专项研究项目专题等10余项课题;研究成果发表高水平SCI期刊论文50余篇,授权国家发明专利4项;主讲课程包括《燃烧学》、《航空发动机原理2》、《可持续航空燃料燃烧与排放》、《航空发动机设计》、《科研课堂》等。 教育经历 2000.9-2004.6 清华大学 能源与动力工程 学士学位 大学本科 2004.9-2007.6 中国科学院 工程热物理研究所 硕士学位 硕士研究生 2007.9-2013.1 美国凯斯西储大学 机械工程 工学博士学位 博士研究生 工作经历 2013.2 - 2014.11 机械工程学院 美国康涅狄格大学 博士后 2014.12 - 2019.9 能源与动力工程学院 北京航空航天大学 副教授 2019.10-至今 航空发动机研究院 北京航空航天大学 中英联合科教中心主任 副教授

研究领域

低碳可持续航空燃料燃烧与应用、层流与湍流火焰燃烧、污染物生成机理与控制、燃料化学反应动力学、清洁高效燃烧技术、燃烧数值仿真等

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

Tuo CY, Hui X, Sung CJ.A hierarchical reduction method with selective targets for combustion modeling of large hydrocarbons: A case study of 1,3,5-trimethylbenzene skeletal mechanism:Fuel,2023,346:128277 Nobili A, Zheng DS, Pelucchi M, Cuoci A, Frassoldati A, Hui X, Faravelli T.Oxygen effects on soot formation in H2/n-heptane counterflow flames:Combustion and Flame,2023,253:112821 Wang ZC, Hui X, Han M, Liu CX, Tao WJ.The effects of fuel distribution on exit temperature distribution in a centrally-staged combustor:Physics of Fluids,2023,35:065136 Yang Y, Lin YZ, Xue X, Hui X, Liu GG.Fuel distribution of sub- and supercritical kerosene jets into swirling air in an annular mixing channel:Fuel,2023,340:127611 Zhang JH, Hui X, An Q, Han X, Wang CH.Absolute instabilities and dynamics of helical vortices in twin annular swirling jets ?:Physics of Fluids,2023,35:053611 Zhang JH, Hui X, An Q, Steinberg AM.Transient dynamics of the precessing vortex core in an intermittently shape-transitioning swirl flame:Combustion and Flame,2023,250:112652 Hui X, Zheng DS, Tan WD, Xue X, Liu WT.The effects of hydrogen addition on soot formation in counterflow diffusion n-heptane flames:International Journal of Hydrogen Energy,2023,48:8707 Qian WJ, Hui X, Kronenburg A,Wang B, Zhang, Lin YZ.An investigation into oxidation-induced fragmentation of soot aggregates by Langevin dynamics simulations:Fuel,2023,334:126547 Liu GG, Lin YZ, Li JJ, Xue X, Hui X, Sung CJ, Yang Y.Flow characteristics and phase transition of subcritical to supercritical kerosene injections in a convergent nozzle:Fuel,2023,334:126518 Ma JL, Hui X, Han X, Han M, Yang ZP, Tao WJ.The effect and mechanism of the flow deflector on ignition performance of the centrally staged combustor,2023,35:027113 Qian WJ, Hui X, Wang B, Zhang ZW, Lin YZ, Yang SH.Physics-informed neural network for inverse heat conduction problem:Heat Transfer Research,2023,54:65 Zheng DS, Hui X, Xue X, Liu WT.The effects of oxygen index on soot formation of ethylene, propane and their mixtures in coflow diffusion flames:Energy & Environment,2022 Zheng DS, Nobili A, Cuoci A, Pelucchi M, Hui X, Faravelli T.Soot formation from n-heptane counterflow diffusion flames: Two-dimensional and oxygen effects:Combustion and Flame,2022:112441 Qian WJ, Kronenburg A, Hui X, Lin YZ, Karsch M.Effects of agglomerate characteristics on their collision kernels in the free molecular regime:Journal of Aerosol Science,2022,159:105868 Hui X, Qian WJ, Lin YZ, Zhang C, Wang JC.Effects of liquid and air swirls on the three-dimensional instability of an annular viscous liquid sheet:Fuel,2021,292:120227 Hui X, Liu WT, Xue X, Sung CJ.Sooting characteristics of hydrocarbon compounds and their blends relevant to aviation fuel applications:Fuel,2021,287:119522 Chi Zhang, Ruixin Wang, Xin Hui,* Xin Xue,* Yuzhen Lin, and Chih-Jen Sung.Nonlinear threshold sooting index prediction method for surrogate formulation emulating sooting characteristics: A case study using RP?3 jet fuels:Energy & Fuels,2020,34:9990 Han X, Laerab D, Yang, D, Zhang C, Wang, JC, Hui X, Lin, YZ, Morgan AS, Sung CJ.Flame interactions in a stratified swirl burner: Flame stabilization, combustion instabilities and beating oscillations:Combustion and Flame,2020,212:500 Han X., Laera D., Morgans AS, Lin Y, Zhang C, Hui X., Sung CJ.Inlet temperature driven supercritical bifurcation of combustion instabilities in a lean premixed prevaporized combustor:Experimental Thermal and Fluid Science,2019,109:109857 Qian WJ, Lin YZ, Hui X.Effect of heat and mass transfer on the instability of an annular liquid sheet:International Journal of Heat and Mass Transfer,2019,44:24312 Hui X, Zheng DS, Zhang C, Xue X, Sung CJ.Effects of hydrogen peroxide addition on two-stage ignition characteristics of n-heptane/air mixtures:International Journal of Hydrogen Energy,2019,44:24312 Zhang C, Mi XT, Hui X, Lin YZ, Mongia H, Sung CJ.Characterizing particulate matter emissions in an aviation kerosene-fueled model combustor at elevated pressures and temperatures:Fuel,2019,241:227 Xue X, Hui X, Vannorsdall P, Singh P, Sung CJ.The blending effect on the sooting tendencies of alternative/conventional jet fuel blends in non-premixed flames:Fuel,2019,237:648 Han X, Laera D, Morgans AS, Sung CJ, Hui X, Lin YZ.Flame macrostructures and thermoacoustic instabilities in stratified swirling flames:Proceedings of the Combustion Institute,2019,37:5377 Gao W, Lin YZ, Hui X, Zhang C, Xu QH.Injection characteristics of near critical and supercritical kerosene into quiescent atmospheric environment:Fuel,2019,235:775 Gribi B, Lin YZ, Hui X, Zhang C, Sung CJ.Effects of Hydrogen Peroxide Addition on Combustion Characteristics of n-Decane/Air Mixtures:Fuel,2018,223:324 Xue X, Hui X, Singh P, Sung C.Soot formation in non-premixed counterflow flames of conventional and alternative jet fuels:Fuel,2017,210:343 Xu QH, Liu ZT, Zhang C, Hui X, Lin YZ.Surrogate formulation for a coal-based jet fuel using a mixing model based on explicit equations and artificial neural network:Fuel,2017,210:262 Wang B, Zhang C, Lin YZ, Hui X, Li JB.Influence of main swirler vane angle on the ignition performance of TeLESS-II combustor:Journal of Engineering for Gas Turbines and Power,2017,139:011501 Reduced chemistry for butanol isomers at engine-relevant conditions.Reduced chemistry for butanol isomers at engine-relevant conditions:Energy & Fuels,2017,31:867 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,2016,165:34 Zhang C, Hui X, Lin YZ, Sung CJ.Recent development in studies of alternative jet fuel combustion: Progress, challenges, and opportunities:Renewable and Sustainable Energy Reviews,2016,54:120 Singh P, Hui X, Sung CJ.Soot formation in non-premixed counterflow flames of butane and butanol isomers:Combustion and Flame,2016,164:167 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,2015,40:16618 Brady KB, Hui X, Sung CJ, Niemeyer, Kyle E..Counterflow ignition of n-butanol at atmospheric and elevated pressures:Combustion and Flame,2015,162:3596 Hui X, Zhang C, Xia M, Sung CJ.Effects of hydrogen addition on combustion characteristics of n-decane/air mixtures:Combustion and Flame,2014,161:2252 Hui X, Sung CJ.Laminar flame speeds of transportation-relevant hydrocarbons and jet fuels at elevated temperatures and pressures:Fuel,2013,109:191 Hui X, Kumar K, Sung CJ, Edwards T, Gardner D.Experimental studies on the combustion characteristics of alternative jet fuels:Fuel,2012,98:176 Hui X, Das AK, Kumar K, Sung CJ, Dooley S, Dryer FL.Laminar flame speeds and extinction stretch rates of selected aromatic hydrocarbons:Fuel,2012,97:695 Dooley S, Won SH, Heyne J, Farouk T, Dryer FL, Ju Y, Kumar K, Hui X, Sung CJ, et al..The experimental evaluation of a methodology to surrogate fuel formulation for the emulation of gas phase combustion kinetic phenomena by a theory of real fuel oxidation:Combustion and Flame,2012,159:1444 Kumar K, Sung, CJ, Hui, X.Laminar flame speeds and extinction limits of conventional and alternative jet fuels:Fuel,2011,90:1004

学术兼职

2021.1-至今 北京热物理与能源工程学会理事会理事 2021.1-至今 中国工程热物理学会燃烧学科普委员会委员 2020.1-至今 中国航空学会动力分会燃烧与传热传质专业委员

推荐链接
down
wechat
bug