姓 名:张泽龙 | |
职 称:讲师 | |
职 务:无 | |
所属系:建筑环境与热能工程系 | |
邮 箱:zzl@ahjzu.edu.cn |
一、基本情况
本科毕业于山东大学热能工程专业,博士毕业于中国科学技术大学动力工程及工程热物理专业。
二、主要研究领域、方向
硕士生研究方向:电弧等离子体的放电模拟、低温等离子体催化转化技术及传热强化技术、阻燃材料。
主讲本科生课程:《锅炉原理与设备》、《换热器原理与设计》、《系统节能》
三、教科研项目
参与国家自然科学基金及省部级项目4项
四、10篇代表性论著
1. Zhang Z L,Wang C,Sun Q and Xia W D. Fluctuation of arc plasma in arc plasma torch with multiple cathodes[J].Chinese Physics B,2019,28(9):095201.
2.Zhang Z L,Xu Z M,Cheng C,Wei J,Lan Y,Ni G H,Sun Q,Qian S L, Zhang H,Xia W D,Shen J,Meng Y D and Paul K C. Bactericidal Effects of Plasma Induced Reactive Species in Dielectric Barrier Gas–Liquid Discharge. Plasma Chemistry and Plasma Processing, 2017, 37: 415-431.
3. Zhang Z L,Shen J,Cheng C,Xu Z M and Xia W D.Generation of reactive species in atmospheric pressure dielectric barrier discharge with liquid water. Plasma Science and Technology,2018,20(4),044009.
4.Zhang Z L,Wang C,Sun Q,and Xia W D.Three-dimensional non-equilibrium modeling of a dc multi-cathode arc plasma torch. Plasma Science and Technology,2021,23(7),075404 (12pp).
5.Zhang Z L,Wang C;Sun Q;Xia W D;Two-dimensional self-consistent numerical simulation of the whole discharge region in an atmospheric argon arc, Plasma Science andTechnology,2022,2022(05):150-161
6.Zhang Z L,Wang C,Sun Q,Zhu S G,Xia W D.Spheroidization of Tungsten Powder by a DC Arc Plasma Generator with Multiple Cathodes[J]. Plasma Chemistry and Plasma Processing, 2022, 42(4):939-956.
7.Wang C,Zhang Z L,Xia W L,Cui H C and Xia W D.Direct Observation of Anode Arc Root Behaviors in a Non-transferred Arc Plasma Device with Multiple Cathodes. Plasma Chemistry and Plasma Processing,2017,37(2),371-382.
8.Wang C, Zhang Z L, Cui H C, Xia W L, Xia W D. Characteristics of helium DC plasma jets at atmospheric pressure with multiple cathodes[J]. Chinese Physics B, 2017, 26(08):303-311.
9.Wang X-WQ,Zhang Z L,Xu Z M,and Chen X H.Numerical modeling of different streamer breakdown modes of gas switch under the external circuit.AIP Advances13,045001(2023).
10.Sun Q, Wang C,Zhang Z L, et al. Non-equilibrium modelling of free-burning argon arc in different anode sheath regimes [J]. Journal of Physics D: Applied Physics. 2019, 52, 265204.