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赵焕娟等:甲烷预混气螺旋爆轰的定量不稳定性研究 ·1531· 波胞格结构的研究.爆炸与冲击,2004,24(2):158) onation in ducts.Prog Energy Combust Sci,2008,34(4):499 5]Wang C J,Xu S L.Numerical study on cellular detonation in a [10]Lee J H S.The Detonation Phenomenon.New York:Cambridge straight tube based on detailed chemical reaction model.Explos University Press,2008 Shock Waves,.2005,25(5):405 [11]Schwarez M,Shaw L.Signal Processing:Discrete Spectral Analy- (王昌建,徐胜利.直管内胞格爆轰的基元反应数值研究.爆 sis,Detection and Estimation.New York:MeGraw-Hill,1975. 炸与冲击,2005,25(5):405) [12]Oppenheim A V,Schafer R W.Discrete-time Signal Processing. 6]Liu Y,Wu D,Wang J P.Structure of oblique detonation wave at 2nd Ed.Upper Saddle River:Prentice Hall,1999 low in flow Mach number.Explos Shock Wares,2015,35 (2): [13]Shepherd J E,Moen I O,Murray S B,et al.Analysis of the cel- 203 lular structure of detonations //21st Symposium (International) (刘岩,武丹,王健平.低马赫数下斜爆轰波的结构.爆炸与 on Combustion.Munich,1986:1649 冲击,2015,35(2):203) [14]Shepherd JE.Detonation in gases.Proc Combust Inst,2009,32 Teng HH,Ng H D,Li K,et al.Evolution of cellular structures (1):83 on oblique detonation surfaces.Combust Flame,2015,162(2): [15]Zhao H,Lee J HS,Lee J,et al.Quantitative comparison of cel- 470 lular patterns of stable and unstable mixtures.Shock Waves, [8]Lee J J,Garinis D,Frost D L,et al.Two-dimensional autocorre- 2016,26(5):621 lation function analysis of smoked foil patterns.Shock Wares, [16]Kaneshige M,Shepherd J E.Detonation Database [DB/OL] 1995,5(3):169 California Institute of Technology.(1999903)2016-1- 9]Ciccarelli G,Dorofeev S.Flame acceleration and transition to det- 0].http://shepherd.caltech.edu/detn_db/html/db.pof赵焕娟等: 甲烷预混气螺旋爆轰的定量不稳定性研究 波胞格结构的研究. 爆炸与冲击,2004,24( 2) : 158) [5] Wang C J,Xu S L. Numerical study on cellular detonation in a straight tube based on detailed chemical reaction model. Explos Shock Waves,2005,25( 5) : 405 ( 王昌建,徐胜利. 直管内胞格爆轰的基元反应数值研究. 爆 炸与冲击,2005,25( 5) : 405) [6] Liu Y,Wu D,Wang J P. Structure of oblique detonation wave at low in flow Mach number. Explos Shock Waves,2015,35 ( 2) : 203 ( 刘岩,武丹,王健平. 低马赫数下斜爆轰波的结构. 爆炸与 冲击,2015,35( 2) : 203) [7] Teng H H,Ng H D,Li K,et al. Evolution of cellular structures on oblique detonation surfaces. Combust Flame,2015,162( 2) : 470 [8] Lee J J,Garinis D,Frost D L,et al. Two-dimensional autocorre￾lation function analysis of smoked foil patterns. Shock Waves, 1995,5( 3) : 169 [9] Ciccarelli G,Dorofeev S. Flame acceleration and transition to det￾onation in ducts. Prog Energy Combust Sci,2008,34( 4) : 499 [10] Lee J H S. The Detonation Phenomenon. New York: Cambridge University Press,2008 [11] Schwarez M,Shaw L. Signal Processing: Discrete Spectral Analy￾sis,Detection and Estimation. New York: McGraw-Hill,1975. [12] Oppenheim A V,Schafer R W. Discrete-time Signal Processing. 2nd Ed. Upper Saddle River: Prentice Hall,1999 [13] Shepherd J E,Moen I O,Murray S B,et al. Analysis of the cel￾lular structure of detonations / / 21st Symposium ( International) on Combustion. Munich,1986: 1649 [14] Shepherd J E. Detonation in gases. Proc Combust Inst,2009,32 ( 1) : 83 [15] Zhao H,Lee J H S,Lee J,et al. Quantitative comparison of cel￾lular patterns of stable and unstable mixtures. Shock Waves, 2016,26( 5) : 621 [16] Kaneshige M,Shepherd J E. Detonation Database [DB /OL]. California Institute of Technology. ( 1999--09--03) [2016--01-- 05]. http: / /shepherd. caltech. edu /detn_db /html /db. pdf ·1531·
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