研究成果: |
目前共发表论文10余篇,申请软件著作权2项,其中以第一作者身份录用或发表SCI/EI论文6篇,曾获中国工程热物理年会优秀论文及国际煤燃烧会议Best Paper Award等荣誉。参与国家自然科学基金、国家重点研发计划等多个项目。 [1] Yu Wang, Chengdong Kong*, Juntao Ao, et al. Correlation between NH3 and NO emissions of gliding arc discharge assisted ammonia/air premixed flame near the lean blowout limit. Combustion and Flame. 2025, 281: 114451. [2] Yu Wang, Chengdong Kong*, Juntao Ao, et al. A phenomenological understanding of the multimodal low-frequency oscillating combustion of ammonia induced by filamentary plasma discharge. Combustion and Flame. 2024, 270: 113748. [3] Yu Wang, Chengdong Kong*, Chengyi Wang, et al. Characteristics of unsteady rotating gliding arc induced ignition of ammonia–air mixture in swirling flow. Fuel. 2024, 364: 131117. [4] Yu Wang, Chengdong Kong*, Xiaojiang Wu, et al. Characteristics of rotating gliding arc induced thermal ignition of lean methane-air mixtures. Applications in Energy and Combustion Science. 2023, 14: 100154. [5] Yu Wang, Yuefeng Yu*, Xiaolei Zhu, et al. Pattern recognition for measuring the flame stability of gas-fired combustion based on the image processing technology. Fuel. 2020, 270: 117486. [6] Yu Wang, Chengdong Kong*, Chengyi Wang, et al. Unsteady characteristics of rotating gliding arc induced ammonia-air ignition, the 10th international symposium on coal combustion, Shanxi Taiyuan, 2023.8.6-2023.8.9. [7] 王宇, 余岳峰*, 朱小磊, 等. 基于光流法和深度学习的燃气火焰稳定性. 上海交通大学学报, 2021, 55(4): 462-470. (EI) [8] 王宇, 孔成栋*, 乌晓江, 等. 等离子体拓展氨/空气预混旋流火焰贫燃极限. 燃烧科学与技术, 2024, 30(5): 457-465. [9] Chengdong Kong*, Yu Wang, Xiaojiang Wu, et al. Rotating gliding arc discharge induced flame oscillation near the lean blowout limit. Combustion and Flame. 2023, 254: 112812. [10] Chengdong Kong*, Yu Wang, Yong Qian, et al. Moderate micro-explosion during the combustion of iron wire in atmospheric air. Proceedings of the Combustion Institute. 2023, 39(3): 3489-3495.
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科研项目: |
1、国家自然科学基金面上项目, 多通道有序放电等离子体拓宽氨贫燃吹熄极限机理研究, 在研, 参与 2、国家自然科学基金青年基金项目, 非平衡等离子体强化氨燃烧热-化学作用机理研究, 结项, 参与 3、中石油横向课题, 多场耦合作用下失控井周温度场机理研究, 结项, 参与 4、国家重点研发计划, 燃气锅炉能效检测监测关键技术及设备研究, 结项, 参与 |