发表的英文论文(*为通讯作者)
[1] Bo Zhang,Changwei Ji*, Shuofeng Wang. Investigation on the lean combustion performance of a hydrogen-enriched n-butanol engine [J]. Energy Conversion and Management, 2017,136:36-43.
[2]Changwei Ji*, Puyan Xu, Shuofeng Wang. Reducing HC emissions from a gasoline engine at the starting conditions through activated carbon adsorption [J]. Applied Thermal Engineering, 2017,112:124-132.
[3]Changwei Ji*, Jinxin Yang, Xiaolong Liu, et al. A quasi-dimensional model for combustion performance prediction of an SI hydrogen-enriched methanol engine [J]. International Journal of Hydrogen Energy, 2016,41(39):17676-17686
[4] Bo Zhang,Changwei Ji*, Shuofeng Wang. Performance of a hydrogen-enriched ethanol engine at unthrottled and lean conditions [J]. Energy Conversion and Management, 2016,114,68-74.
[5]Changwei Ji*, Menghui Yu, Shuofeng Wang et al. The optimization of on-board H2 generator control strategy and fuel consumption of an engine under the NEDC condition with start-stop system and H2 start [J]. International Journal of Hydrogen Energy, 2016,41(42):19256-19264.
[6]Changwei Ji*, Jinxin Yang, Xiaolong Liu et al. Enhancing the fuel economy and emissions performance of a gasoline engine-powered vehicle with idle elimination and hydrogen start [J]. Applied Energy, 2016,182:135-144.
[7] Bo Zhang,Changwei Ji*, Shuofeng Wang. Performance of a hydrogen-enriched ethanol engine at unthrottled and lean conditions [J]. Energy Conversion and Management, 2016,114: 68-74.
[8]Changwei Ji*, Teng Su, Shuofeng Wang, et al. Effect of hydrogen addition on combustion and emissions performance of a gasoline rotary engine at part load and stoichiometric conditions [J]. Energy Conversion and Management, 2016,121: 272-80.
[9] Shuofeng Wang,Changwei Ji*, Bo Zhang, et al. Effect of CO2 dilution on combustion and emissions characteristics of the hydrogen-enriched gasoline engine [J]. Energy, 2016,96:118-26.
[10] Bo Zhang,Changwei Ji*, Shuofeng Wang. Combustion analysis and emissions characteristics of a hydrogen-blended methanol engine at various spark timings [J]. International Journal of Hydrogen Energy, 2015,40(13):4707-4716.
[11] Shuofeng Wang,Changwei Ji*, Bo Zhang et al. Lean burn performance of a hydrogen-blended gasoline engine at the wide open throttle condition [J]. Applied Energy, 2014,136:43-50.
[12] Bo Zhang,Changwei Ji*, Shuofeng Wang et al. Combustion and emissions characteristics of a spark-ignition engine fueled with hydrogen–methanol blends under lean and various loads conditions [J]. Energy, 2014,74:829-835.
[13] Bo Zhang,Changwei Ji, Shuofeng Wang et al. Investigation on the cold start characteristics of a hydrogen-enriched methanol engine [J]. International Journal of Hydrogen Energy, 2014,39(26):14466-14471.
[14]Changwei Ji*, Xiaolong Liu, Shuofeng Wang et al. A laminar burning velocity correlation for combustion simulation of hydrogen-enriched ethanol engines [J]. Fuel, 2014,133:139-142.
[15] Shuofeng Wang,Changwei Ji*, Bo Zhang. Realizing the part load control of a hydrogen-blended gasoline engine at the wide open throttle condition [J]. International Journal of Hydrogen Energy, 2014,39(14):7428-7436.
[16] Chen Liang,Changwei Ji*, Binbin Gao. Load characteristics of a spark-ignited ethanol engine with DME enrichment [J]. Applied Energy, 2013,112:500-506.
[17]Changwei Ji*, Xiaolong Liu, Shuofeng Wang, et al. Development and validation of a laminar flame speed correlation for the CFD simulation of hydrogen-enriched gasoline engines [J]. International Journal of Hydrogen Energy, 2013,38(4):1997-2006.
[18]Changwei Ji*, Xiaoxu Dai, Shuofeng Wang. Experimental study on combustion and emissions performance of a hybrid syngas–gasoline engine [J]. International Journal of Hydrogen Energy, 2013,38(25): 11169-11173.
[19] Xiaolong Liu,Changwei Ji*, Binbin Gao et al. A laminar flame speed correlation of hydrogen–methanol blends valid at engine-like conditions [J]. International Journal of Hydrogen Energy, 2013,38(35): 15500-15509.
[20]Changwei Ji*, Xiaolong Liu, Binbin Gao et al. Numerical investigation on the combustion process in a spark-ignited engine fueled with hydrogen–gasoline blends [J]. International Journal of Hydrogen Energy,2013,38(25):11149-11155.
[21]Changwei Ji*, Bo Zhang, Shuofeng Wang. Enhancing the performance of a spark-ignition methanol engine with hydrogen addition [J]. International Journal of Hydrogen Energy.2013,38(18):7490-7498.
[22]Changwei Ji*, Shuofeng Wang, Bo Zhang et al. Emissions performance of a hybrid hydrogen–gasoline engine-powered passenger car under the New European Driving Cycle [J]. Fuel, 2013,106: 873-875.
[23]Changwei Ji*, Chen Liang, Binbin Gao et al. The cold start performance of a spark-ignited dimethyl ether engine [J]. Energy, 2013,50: 187-193.
[24] Xiaoxu Dai,Changwei Ji*, Shuofeng Wang et al. Effect of syngas addition on performance of a spark-ignited gasoline engine at lean conditions, International Journal of Hydrogen Energy , 2012,37(19):14624-14631.
[25] Shuofeng Wang,Changwei Ji*, Bo Zhang et al. Performance of a hydroxygen-blended gasoline engine at different hydrogen volume fractions in the hydroxygen, International Journal of Hydrogen Energy , 2012,37(17):13209-13218.
[26]Changwei Ji*, Shuofeng Wang, Bo Zhang et al. Performance of a hybrid hydrogen-gasoline engine under various operating conditions, Applied Energy, 2012,97(9):584-589.
[27] Chen Liang,Changwei Ji*, Xiaolong Liu, Yongming Zhu et al. Investigation on the performance of a spark-ignited ethanol engine with DME enrichment , Energy Conversion and Management, 2012,58(6):19-25.
[28]Changwei Ji*, Xiaoxu Dai, Bingjie Ju et al. Improving the performance of a spark-ignited gasoline engine with the addition of syngas produced by onboard ethanol steaming reforming,International Journal of Hydrogen Energy, 2012,37(9):7860-7868.
[29]Changwei Ji*, Shuofeng Wang. Strategies for improving the idle performance of a spark-ignited gasoline engine, International Journal of Hydrogen Energy, 2012,37(4):3938-3944.
[30]Changwei Ji*, Chen Liang, Yongming Zhu et al. Investigation on idle performance of a spark-ignited ethanol engine with dimethyl ether addition, Fuel Processing Technology, 2012,94(1):94-100.
[31]Changwei Ji*, Shuofeng Wang, Cyclic variation in a hydrogen-enriched spark-ignition gasoline engine under various operating conditions, International Journal of Hydrogen Energy, 2012,37(1):1112-1119.
[32] Shuofeng Wang,Changwei Ji*,Jian Zhang andBo Zhang.Improving the performance of a gasoline engine with the addition of hydrogen-oxygen mixtures. Int. J Hydrogen energy36 (2011) 11164-11173.
[33] Chen Liang,Changwei Ji*, Xiaolong Liu.Combustion and emissions performance of a DME-enriched spark-ignited methanol engine at idle condition.Applied Energy 88 (2011) 3704-3711.
[34]Shuofeng Wang,Changwei Ji*, Bo Zhang.Starting a spark-ignited engine with the gasoline–hydrogen mixture. International Journal of Hydrogen Energy 36(2011)4461-4468.
[35]Changwei Ji*, Shuofeng Wang. Effect of hydrogen addition on lean burn performance of a spark-ignited gasoline engine at 800 rpm and low loads. Fuel 90 (2011) 1301-1304.
[36]Changwei Ji*,Chen Liang, Shuofeng Wang.Investigation on combustion and emissions of DME/gasoline mixtures in a spark-ignition engine. Fuel90 (2011) 1133-1138.
[37]Shuofeng Wang,Changwei Ji*, Jian Zhang, Bo Zhang. Comparison of the performance of a spark-ignited gasoline engine blended with hydrogen and hydrogen-oxygen mixtures. Energy 36 (2011) 5832-5837.
[38]Shuofeng Wang,Changwei Ji*,Bo Zhang.Effects of hydrogen addition and cylinder cutoff on combustion and emissions performance of a spark-ignited gasoline engine under a low operating condition.Energy2010;35(12):4754-4760.
[39]Shuofeng Wang,Changwei Ji*,Bo Zhang.Reducing the idle speed of a spark-ignited gasoline engine with hydrogen addition.International Journal of Hydrogen Energy2010;35(19):10580-10588.
[40]Shuofeng Wang,Changwei Ji*,Bo Zhang.Effect of hydrogen addition on combustion and emissions performance of a spark-ignited ethanol engine at idle and stoichiometric conditions.International Journal of Hydrogen Energy2010;35(17):9205-9213.
[41]Changwei Ji*, Shuofeng Wang, Bo Zhang.Combustion and emissions characteristics of a hybrid hydrogen-gasoline engine under various loads and lean conditions.International Journal of Hydrogen Energy2010;35(5):5714-5722.
[42]Changwei Ji*, Shuofeng Wang, Bo Zhang. Effect of spark timing on the performance of a hybrid hydrogen–gasoline engine at lean conditions. International Journal of Hydrogen Energy2010;35(5):2203-2212.
[43]Changwei Ji*,Shuofeng Wang. Experimental Study On Combustion And Emissions Performance of A Hybrid Hydrogen-Gasoline Engine At Lean Burn Limits. International Journal of Hydrogen Energy2010;35(3):1453-1462.
[44]Changwei Ji*,Shuofeng Wang. Combustion and emissions performance of a hybrid hydrogen–gasoline engine at idle and lean conditions. International Journal of Hydrogen Energy2010;35(1):346-355.
[45]Changwei Ji*,Shuofeng Wang.Effect of hydrogen addition on combustion and emissions performance of a spark -ignited gasoline engine at lean conditions.International Journal of Hydrogen Energy2009;34(18):7823-7834.
[46]Changwei Ji*,Shuofeng Wang.Effect of Hydrogen Addition on Idle Performance of a Spark-Ignited Gasoline Engine at Lean Conditions with a Fixed Spark Advance . Energy & Fuels2009;23(9):4385-4394.
[47]Changwei Ji*,Shuofeng Wang.Effect of hydrogen addition on the idle performance of a spark ignited gasoline engine at stoichiometric condition.International Journal of Hydrogen Energy2009;34(8):3546-3556.
[48]Changwei Ji*,Shuofeng Wang.Experimental Study on Combustion and Emissions Characteristics of a Spark Ignition Engine Fueled with Gasoline-Hydrogen Blends.Energy & Fuels2009;23(6):2930-2936.