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李敬轩
( 教授 )
赞
的个人主页 http://shi.buaa.edu.cn/ljxuaa/zh_CN/index.htm
教授 博士生导师 硕士生导师
教师拼音名称:
Jingxuan Li
电子邮箱:
75217c53891c754bb52484266e8a3ccc6fe3c254c81feb247e986206f7f14d11ca2c769945997318255a9a0848ee79b78d7f3b65b0cc5f43bd273530042625feee659d254571b8d439ad276a1d51bc6fb78040a513a89e18bb9364c4515056c315d7684d117ffbc876e2610f1471e1873ffe77391880e0acf13324fb6635f6f9
所在单位:
宇航学院
办公地点:
北航沙河校区主楼D507
性别:
男
学位:
工学博士学位
在职信息:
在职
毕业院校:
Ecole Centrale Paris
论文
当前位置:
北航李敬轩
>>
论文
[41]
.J Li, Y Xia, AS Morgans, X Han. Numerical prediction of combustion instability limit cycle oscillations for a combustor with a long flame. Combustion and Flame 185, 28-43, 2017.
[42]
.J Li, AS Morgans. The one-dimensional acoustic field in a duct with arbitrary mean axial temperature gradient and mean flow. Journal of Sound and Vibration 400, 248-269, 2017.
[43]
.X Han, J Li, AS Morgans. Prediction of combustion instability limit cycle oscillations by combining flame describing function simulations with a thermoacoustic network model. Combustion and flame 162 (10), 3632–3647, 2015.
[44]
.J Li, AS Morgans. Feedback control of combustion instabilities from within limit cycle oscillations using H∞ loop-shaping and the ν-gap metric. Proceedings of The Royal Society A 472 (2191), 20150821, 2016.
[45]
.J Li, AS Morgans. Simplified models for the thermodynamic properties along a combustor and their effect on thermoacoustic instability prediction. Fuel 184, 735-748, 2016.
[46]
.J Li, D Durox, F Richecoeur, T Schuller. Analysis of chemiluminescence, density and heat release rate fluctuations in acoustically perturbed laminar premixed flames. Combustion and Flame 162 (10), 3934–3945, 2015.
[47]
.J Li, AS Morgans. Time domain simulations of nonlinear thermoacoustic behaviour in a simple combustor using a wave-based approach. Journal of Sound and Vibration 346, 345-360, 2015.
[48]
.J Li, D Yang, C Luzzato, AS Morgans. OSCILOS: The Open Source Combustion Instability Low Order Simulator. http://www.oscilos.com/, 2014.
[49]
.J Li, F Richecoeur, T Schuller. Reconstruction of heat release rate disturbances based on transmission of ultrasounds: Experiments and modeling for perturbed flames. Combustion and Flame 160 (9), 1779-1788, 2013.
[50]
.J Li, F Richecoeur, T Schuller. Determination of heat release rate disturbances in unconfined flames based on fluctuations in the travel time of ultrasonic waves. Combustion science and technology 184 (4), 533-555, 2012.
共54条 5/6
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