[1] Hsu K Y, Goss L P, Trump D D, et al.Performance of a Trapped Vortex Combustor [R].AIAA 95-0810.
[2] Edmonds R G, Williams J T, Steele R C, et al.Low NOx Advanced Vortex Combustor[J].Journal of Engineering for Gas Turbines and Power, 2008,0(3):034502.
[3] Edmonds R G, Steele R C ,Williams J T, et al.Ultra-Low NOx Advanced Vortex Combustor[R].ASME 2006-GT-90319.
[4] 邓洋波, 刘世青, 钟兢军.AVC中钝体布置与燃烧室流动特性研究[J].工程热物理学报, 2008,9(8):1416-1418.
[5] 邓洋波, 刘世青, 钟兢军.先进旋涡燃烧室流动与燃烧特性分析[J].航空动力学报, 2009,4(3):489-493.
[6] 邓洋波, 孙海涛, 王玉龙, 等.氢燃料先进旋涡燃烧室流动和燃烧特性[J].航空动力学报, 2013,8(1):120-128.
[7] 刘世青, 钟兢军.驻涡燃烧室后驻体形状选择冷态数值研究[J], 工程热物理学报, 2010,1(9):1480-1483.
[8] 钟兢军, 刘世青, 肖雨, 等.驻涡燃烧室前驻体后端面冷态数值研究[J].热能动力工程, 2011,5(5):482-486.
[9] 刘世青, 钟兢军.后驻体喷射角度对驻涡燃烧室影响冷态数值研究[J].哈尔滨工程大学学报, 2010,1(8):1-8.
[10] 钟兢军, 刘世青.后驻体喷孔位置影响驻涡腔流动冷态数值研究[J].上海海事大学学报, 2011,2(1):44-48.
[11] Kendrick D W, Chenevert B C.Combustion System Development for the Ramgen Engine [J].Journal of Engineering for Gas Turbines and Power, 2003,5(4):885-894.
[12] 何小民, 王家骅.驻涡火焰稳定器冷态流场特性的初步研究[J].航空动力学报, 2002,7(5):567-571.
[13] Fei Xing, Peiyong Wang, Shuai Zhang, et al.Experiments and Simulation Study on Lean Blow-out of Trapped Vortex Combustor with Various Aspect Ratios[J].Aerospace Science and Technology, 2012,8(1):48-55.
[14] Cindy Merlin, Pascale Domingo, Luc Vervish.Large Eddy Simulation of Turbulent Flames in a Trapped Vortex Combustor (TVC)-A Flamelet Presumed-pdf Clouse Preserving Laminar Flame Speed[J].Comptes Rendus Mecanique, 2012,0(11-12):917-932.
[15] 樊未军, 易琪, 严明, 等.驻涡燃烧室凹腔双涡结构研究[J].中国电机工程学报, 2006,6(9):66-70.
[16] 邢菲, 樊未军, 柳杨, 等.凹腔油气匹配对驻涡燃烧室点火性能影响实验[J].推进技术, 2008,9(4):412-421.(XING Fei, FAN Wei-jun, LIU Yang, et al.Ignition and Lean Blow Out Performance of TVC with Different Fuel-Air Matching Forms[J].Journal of Propulsion Technology, 2008,9(4):412-421.)
[17] 刑菲, 孟祥泰, 李继保,等.凹腔驻涡稳焰冷态流场初步研究[J].推进技术, 2008,9(2):135-138.(XING Fei, MENG Xiang-tai, LI Ji-bao,et al.Elementary Study on Cool Flow Field of Double Vortex in Cavity for Flame Stabilization[J].Journal of Propulsion Technology, 2008,9(2):135-38.)
[18] Adela Ben-Yakar, Hanson R K.Cavity Flame-Holders For Ignition and Flame Stabilization in Scramjets:An Overview [J].Journal of Propulsion and Power, 2001,7(4):869-878.
[19] Benjamin J, Tatman R D, Rochwell C P, et al.Experimental Study of Vitiation Effects on Flamdholding in a Cavity Flameholder[J].Journal of Propulsion and Power, 2013,9(2):417-423.
[20] Grady N R, Pitz R W, Hsu K Y, et al.Supersonic Flow over Ramped-Wall Cavity Flame Holder with an Upstream Strut[J].Journal of Propulsion and Power, 2012,8(5):982-990.
[21] 耿辉, 周进, 翟振辰, 等.凹腔结构对超声速燃烧室中横向燃料喷流流动与燃烧的影响[J].推进技术, 2007,8(6):599-606.(GENG Hui, ZHOU Jin, ZHAI Zhen-chen, et al.Influence of Cavity Geometry on Flow and Combustion of Transverse Fuel Jets in a Supesonic Combustor[J].Journal of Propulsion Technology, 2007,8(6):599-606.)
[22] 孙明波, 耿辉, 梁剑寒, 等.超声速来流稳焰凹腔上游气体燃料横向喷注的流动混合特征[J].推进技术, 2008,9(3):306-311.(SUN Ming-bo, GENG Hui, LIANG Jian-han, et al.Mixing Characteristics of Gasous Fuel Injection Upstream of a Flameholding Ccvity in Supersonic Flow[J].Journal of Propulsion Technology, 2008,9(3):306-311.)
[23] 吴海燕, 孙明波, 汪洪波, 等.凹腔稳定的超声速火焰结构的实验研究[J].推进技术, 2008,9(6):655-661.(WU Hai-yan, SUN Ming-bo, WANG Hong-bo, et al.Experimental Study of Supersonic Flame Structure in Cavity[J].Journal of Propulsion Technology, 2008,9(6):655-661.)
[24] 范周琴, 刘卫东, 林志勇,等.凹腔喷射超声速燃烧火焰结构实验研究[J].推进技术, 2013,4(1):60-66.(FAN Zhou-qin, LIU Wei-dong, LIN Zhi-yong,et al.Experimental Investigation on Supersonic Combustion Flame Structure with Cavity Injectors[J].Journal of Propulsion Technology, 2013,4(1):60-66.)
[25] 黄思源, 桂业伟, 白菡尘.凹腔火焰稳定器回流区稳焰机理[J].推进技术, 2011,2(5):684-689.(HUANG Si-yuan, GUI Ye-wei, BAI Han-chen.Flame Stabilizing Mechanism of Recirculation-Zone of Cavity Flameholder[J].Journal of Propulsion Technology, 2011,2(5):684-689.)
[26] 陶文铨.数值传热学[M].西安:西安交通大学出版社,1998.
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