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个人信息Personal Information
副教授
博士生导师
硕士生导师
性别:男
毕业院校:大连理工大学
学位:博士
所在单位:能源与动力学院
学科:工程热物理
办公地点:能源与动力学院711
联系方式:
电子邮箱:
扫描关注
- [1]霍迎.常亚超,贾明,叶莉莉.Kinetics and general reaction rule for hydrogen atom abstraction reactions from C4-C10 alcohols by a hydroxyl radical[J],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2025,27(38):20854-20868
- [2]Jiayue Liu.常亚超,贾明.黄帅.Establishment of a series of skeletal chemical mechanisms for C5 to C19 saturated fatty acid methyl esters based on considering the combined effects of carbon-chain length and functional group[J],Fuel,2024(PC)
- [3]Xu, Zhen.Wang, Jiefan,Zhao, Pengqi,贾明,常亚超,Du, Liming.Exploring energy utilization of the methanol/dimethyl ether dual-fuel engine under the methanol reforming strategy: A comparison of different low-temperature combustion modes[J],Energy,2024,312
- [4]Wang, Huaiyin.常亚超,Sun, Kai,Jia, Ming,Wang, Tianyou.Development of a reduced chemical kinetic mechanism for ammonia/diesel combustion over a wide range of ammonia energy ratios[J],Fuel,2024,381
- [5]李浩冉.常亚超,Xuan, Tiemin,Feng, Yizhuo,贾明.丁锐.Numerical study on the combustion characteristics of n-dodecane/PODE3 blend spray from the perspective of the second law of thermodynamics[J],Combustion and Flame,2024
- [6]常亚超.贾明.黄帅,李洪达.Investigation of the criteria for construction of reliable surrogate fuels: A case study of Jet-A aviation kerosene[J],COMBUSTION AND FLAME,2024,272
- [7]刘佳悦.Huang, Shuai,常亚超,Jia, Ming.Establishment of a Series of Skeletal Chemical Mechanisms for C5 to C19 Saturated Fatty Acid Methy Esters Based on Reaction Rate Rules[J],SSRN,2024
- [8]刘宏升.吕继组,常亚超.“双一流”背景下能源动力类专业基础教研室建设[J],教育教学论坛,2024(23):5-8
- [9]Huang, Shuai.常亚超,张宏达,Jia, Ming.Chemical mechanism reduction and derivation for C7-C16 n-alkylbenzenes using integrated global sensitivity analysis and reaction rate rules[J],2024,40(1-4)
- [10]Xuan, Tiemin.Li, Haojie,Wang, Yutao,常亚超,Jia, Ming,He, Zhixia,Wang, Qian,Cao, Jiawei,Payri, Raul.A conceptual model of polyoxymethylene dimethyl ether 3 (PODE3) spray combustion under compression ignition engine-like conditions[J],COMBUSTION AND FLAME,2024,261
