Prof. Kyung?Chun?Kim學術報告會
發(fā)布時間:2025-03-28   閱讀:2425

題目:Experimental Study on High Swirl NH3/H2 Combustor for MILD Regime

時間:2025年3月28日 9:30-10:30

地點:機械與動力工程學院 F310會議室

邀請人:王國情 副教授、齊飛 教授(航空動力研究所)


Biography

1741595719510671.jpg

Prof. KC Kim received his MS and Ph.D degree at KAIST, Korea in 1981 and 1987 respectively. In 2004, he was selected as a member of National Academy of Engineering of Korea. He was invited as a visiting professor from Ottawa University in Canada, University of Illinois, Urbana-Champaign, USA and the University of Tokyo, Japan. KC Kim was selected as a PNU Distinguished Professor in 2018. He received Nakayama award in 2012 and Asanuma award in 2014 based on contributions in world Visualization society. In 2019, he received Busan Science and Technology award. He is currently serving as an Editor in Chief for Journal of Visualization. In 2020, he was selected as the director of Regional Leading Research Centre for Eco-friendly Smart Ship. Professor Kim published more than 700 technical papers in the SCI journals and other domestic academic journals.


Abstract

This seminar presents an experimental investigation of a novel nonpremixed gas turbine combustor designed for ammonia fuel or blended compositions. The study focuses on flame stability in terms of lean blowout for various fuel mixtures, flame chemiluminescence, and emissions, with a particular emphasis on hydrogen and ammonia blends. The results show that complete combustion of ammonia/H2 with low NOx levels under lean conditions is achievable. To address N2O emissions, variations in fuel H2 content, preheating, and dilution offer control mechanisms for both NOx and N2O. Increasing hydrogen content and preheating elevate NOx levels and conversely reduce N2O emissions. Air dilution decreases NOx levels while increasing N2O emissions. Furthermore, higher levels of preheating and dilution enable the transition to flame transparency and uniformity in the OH field, resembling the MILD combustion regime. Time-resolved 3D vortex structures of the swirl flow were quantitatively visualized by 4D Lagrangian particle tracking velocimetry.

北流市| 彰化县| 瓦房店市| 冀州市| 阜南县| 阿拉善右旗| 苏尼特左旗| 长岭县| 商南县| 延安市| 朝阳区| 乾安县| 杭锦旗| 盐津县| 塘沽区| 长葛市| 阜平县| 北辰区| 武定县| 新野县| 萍乡市| 南昌县| 桂平市| 二连浩特市| 古交市| 荔浦县| 嫩江县| 靖西县| 苍梧县| 武义县| 焦作市| 高安市| 隆回县| 克拉玛依市| 时尚| 宕昌县| 准格尔旗| 株洲市| 芦山县| 太仓市| 梁山县|