船海与能源动力工程学院欢迎您

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船海与能源动力工程学院欢迎您

2023-11-03 21:15| 来源: 网络整理| 查看: 265

[1] Yi Zhang; Gesheng Li;Zunhua Zhang*; Yong Huang; Mengni Zhou; Yi Wei. Insights into CO2removal mechanism via the carbonaceous surface in the exhaust gas of marine NG engines: A first-principles study. Applied Surface Science, 2023, 617, 156542.

[2] Yi Wei, Zunhua Zhang, Xucheng Li, Gesheng Li, Mengni Zhou*, Belal Y. Belal. The ignition characteristics of dual-fuel spray at different ambient methane concentrations under engine-like conditions. Applied Thermal Engineering, 2023: 119634.

[3] Mengni Zhou, Gesheng Li, Shuang Xu, Zunhua Zhang*. Effect of NO2addition on flame dynamics and chemical kinetics of near-limit n-dodecane cool and warm diffusion flames. Fuel, 2023, 334,126576.

[4] Hanyuyang Zhang, Gesheng Li, Yanxiang Long, Zunhua Zhang*, Wenwen Wei, Mengni Zhou, Belal Y. Belal. Numerical study on combustion and emission characteristics of a spark-ignition ammonia engine added with hydrogen-rich gas from exhaust-fuel reforming. Fuel, 2023, 332, 125939.

[5] Shuang Xu, Gesheng Li, Mengni Zhou*, Weiping Yu, Zunhua Zhang*,Di Hou, Fulin Yu. Experimental and kinetic studies of extinction limits of counterflow cool and hot diffusion flames of ammonia/n-dodecane.Combustion and Flame, 2022, 245, 112316.

[6] Yanxiang Long, Gesheng Li, Zunhua Zhang*, Wenwen Wei, Junjie Liang. Hydrogen-rich gas generation via the exhaust gas-fuel reformer for the marine LNG engine.International Journal of Hydrogen energy, 2022, 47(32), 14674-14686.

[7] Yanxiang Long, Gesheng Li, Zunhua Zhang*, Junjie Liang. Application of reformed exhaust gas recirculation on marine LNG engines for NOxemission control, Fuel, 2021, 291, 120114.

[8]张尊华,张丞,梁俊杰,宋超杰,李格升,射流搅拌反应器中气体混合均匀性的模拟研究,工程热物理学报, 2022, 10, 2814-2825.

[9]张尊华,邵超凡,李格升*,梁俊杰,柴油-天然气RCCI发动机燃烧过程数值模拟研究,华中科技大学学报(自然科学版), 2020, 48(7):59–64.

[10]Zunhua Zhang, Renmin Wu, Shangsheng Feng*, Yanxiang Long, Gesheng Li*, Numerical investigation of tubular exhaust reformer with thermochemical recuperation for LNG engine, International Journal of Heat and Mass Transfer, 2020, 146, 118743.

[12]Zunhua Zhang, Jinying Xiong, Junjie Liang, Hailiang Zhang, Gesheng Li*,Effect of water content on premixed laminar flames of hydrous acetone-n-butanol-ethanol (ABE)-air mixtures: An experimental and numerical study, Fuel, 2019, 254, 115625.

[13] Mengni Zhou, Gesheng Li, Junjie Liang, Haiqi Ding, Zunhua Zhang*, Effect of ignition energy on the uncertainty in the determination of laminar flame speed using outwardly propagating spherical flames, Proceedings of the Combustion Institute, 2019, 37(2): 1615–1622.

[14]Zunhua Zhang#, Hao Zhao*,#, Ling Cao, Gesheng Li, Yiguang Ju, Kinetic effects of n-heptane addition on low and high temperature oxidation of methane in a jet-stirred reactor, Energy & Fuels, 2018, 32(11): 11970–11978.

[15]Zunhua Zhang, Pengpeng Jia, Shangsheng Feng, Junjie Liang, Yanxiang Long, Gesheng Li*, Numerical simulation of exhaust reforming characteristics in catalytic fixed-bed reactors for a natural gas engine, Chemical Engineering Science, 2018, 191: 200–207.

[16] Zunhua Zhang, Peng Cheng, Jian Tan, Junjie Liang, Yeyuan Li, Gesheng Li*, The uncertainty of laminar burning velocity of premixed H2-air flame induced by the non-uniform initial temperature field inside the constant-volume combustion vessel, International Journal of Hydrogen Energy, 2018, 43(45): 21049–21059.

[17]张尊华,徐力,梁俊杰,李敬瑞,李格升*,甲烷/乙烷与甲烷/丙烷混合燃料着火特性,化工学报, 2018, 69(5): 2199–2207.

[18] Mengni Zhou, Gesheng Li, Zunhua Zhang*, Junjie Liang, Linyuan Tian, Effect of ignition energy on the initial propagation of ethanol/air laminar premixed flames: An experimental study, Energy & Fuels, 2017, 31(9): 10023–10031.

[19]张尊华,李敬瑞,万琦,李格升*,激波管的调试与甲烷着火延迟时间的测量,华中科技大学学报(自然科学版), 2017, 45(7): 51–55.



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