宁文军 副研究员
博士生导师,天府峨眉计划青年人才
研究方向:放电等离子体基础及应用、电气设备状态监测及评估
所在团队:先进绝缘技术与智能设备研究团队(/info/1029/5882.htm)
Email: ningwj@scu.edu.cn
地址:四川大学望江校区科创中心;四川大学江安校区能源电气材料与智能装备实验室
教育经历
工作经历
主持的代表性课题
纵向课题(主要方向是:放电低温等离子体基础研究)
横向课题(主要方向是:配网树线放电防治技术研究)
代表性一作/通讯论文
1. Atmospheric pressure plasma jet impinging on fiber arrays: Penetration pattern determined by fiber spacing, Applied Physics Letters, 2023 (Nature Index期刊)
2. Inducing discharges in a micrometer catalyst channel by a helium atmospheric pressure plasma jet, Applied Physics Letters, 2019 (Nature Index期刊)
3. Simulation study on an atmospheric pressure plasma jet interacting with a single fiber: effects of the fiber’s permittivity, Plasma Sources Science and Technology, 2022 (低温等离子体顶刊)
4. Propagation of positive discharges in an air bubble having an embedded water droplet, Plasma Sources Science and Technology, 2021 (低温等离子体顶刊)
5. Atmospheric pressure plasma jet impinging on a wavy dielectric surface: effects of DC polarities, Plasma Sources Science and Technology, 2018 (低温等离子体顶刊)
6. Manipulating the discharge pulse number in an atmospheric helium dielectric barrier discharge with multiple current pulses per half cycle. Plasma Sources Science and Technology, 2019 (低温等离子体顶刊)
7. Numerical study on the discharge pattern evolution in an atmospheric pressure helium dielectric barrier discharge under the variation of nitrogen admixture content. Plasma Sources Science and Technology, 2019 (低温等离子体顶刊)
8. Global model of plasma‐activated water over long time scale: Pulsed discharge and afterglow, High Voltage, 2022 (高压绝缘顶刊)
9. Influence of nitrogen impurities on the performance of multiple-current-pulse behavior in a homogeneous helium dielectric-barrier discharge at atmospherc pressure. Journal of Physics D: Applied Physics, 2019 (ESI高被引论文)
10. Effects of trace of nitrogen on the helium atmospheric pressure plasma jet interacting with a dielectric substrate. Journal of Physics D: Applied Physics, 2018 (英国物理学会高被引论文奖)
主要学术兼职
中国电工技术学会等离子体与应用专业委员会青年委员
中国电科院期刊中心青年专家团成员
全国本科毕业论文(设计)抽检评审专家库专家
主讲课程
本科:《电机学》
研究生:《低温等离子体基础及应用》,《电弧等离子体基础》
指导学生竞赛
2022第二届全国大学生等离子体科技创新竞赛,一等奖(本科组)
2021首届全国大学生等离子体科技创新竞赛,二等奖(研究生组)
2021首届全国大学生等离子体科技创新竞赛,三等奖(本科组)
欢迎联系科研训练和竞赛
欢迎报考硕士生和博士生
欢迎学术交流与科研合作
(团队介绍:/info/1029/5882.htm)