[1] LANE W. Shatter of drops in stream of air[J].Industrial and Engineering Chemistry,1951,43(6):1312-1317.
[2] ENGEL O G. Fragmentation of water drops in the zone behind an air shock[J].Journal of Research of the National Bureau of Standards,1958,60(3):245-280.
[3] RANGER A A,NICHOLLS J A. Aerodynamics shattering of liquid drops[J].Journal of American Institute of Aeronautics and Astronautics,1969,7(2):285-290.
[4] WIERZBA A,TAKAYAMA K. Experimental investigation of aerodynamic breakup of liquid drops [J]. Journal of American Institute of Aeronautics and Astronautics,1988,26(11):1329-1335.
[5] HSIANG L P,FAETH G. Nearlimit drop deformation and secondary breakup [J]. International Journal of Multiphase Flow,1992,18(5):635-652.
[6] HSIANG L P,FAETH G. Drop deformation and breakup due to shock wave and steady disturbances [J]. International Journal of Multiphase Flow,1995,21(4):545-560.
[7] 耿继辉,叶经方,王健,等.激波诱导液滴变形和破碎现象实验研究[J].工程热物理学报,2003,24(5):797-800.
[8] 肖毅,施红辉,吴宇,等.激波与液滴作用的空气动力学现象的实验研究[J].浙江理工大学学报,2013,30(2):203-207.
[9] 易翔宇,郭帅涛,朱雨建,等.高速气流中液滴破碎实验研究[C]//第十六届全国激波与激波管学术会议论文集.河南洛阳,2014:360-365.
[10] 金仁瀚,刘勇,朱冬清,等.初始直径对单液滴破碎特性影响的试验[J].航空动力学报,2015,30(10):2401-2409
[1]张苹,亓洪训,章利特,等. 激波驱动颗粒群加速效果优化的实验研究[J].浙江理工大学学报,2013,30(01):71.
ZHANG Ping,QI Hong xun,ZHANG Li te,et al. Experimental Investigation on Optimizing the Effect of Particles Acceleration Driven by Shock Waves[J].Journal of Zhejiang Sci-Tech University,2013,30(自科3):71.
[2]肖毅,施红辉,吴宇,等.激波与液滴作用的空气动力学现象的实验研究[J].浙江理工大学学报,2013,30(02):71.
XIAO Yi,SHI Hong hui,WU Yu,et al. Experimental Study on Aerodynamic Phenomenon ofInteraction between Shock Wave and Liquid Drop[J].Journal of Zhejiang Sci-Tech University,2013,30(自科3):71.
[3]亓洪训,张苹,章利特,等. 激波加载固定单双球模型有效阻力测量[J].浙江理工大学学报,2013,30(02):76.
QI Hong xun,ZHANG Ping,ZHANG Li te,et al. Measurement of Effective Resistance of Fixed Single and DoubleSphere Model with Shock Wave Load[J].Journal of Zhejiang Sci-Tech University,2013,30(自科3):76.
[4]陈婉君,章利特,施红辉,等.激波加载单双圆柱非稳态曳力的数值研究[J].浙江理工大学学报,2015,33-34(自科1):55.
CHEN Wan jun,ZHANG Li te,SHI Hong hui,et al.Numerical study of Unsteady Drag Force in Shock Wave s Interaction with Single/Double Cylindrical Models[J].Journal of Zhejiang Sci-Tech University,2015,33-34(自科3):55.
[5]叶斌,王超,施红辉,等.平面激波与气泡界面相互作用过程的数值研究[J].浙江理工大学学报,2015,33-34(自科5):682.
YE Bin,WANG Chao,SHI Hong hui,et al.Numerical Study of Interaction Process of Planar Shock Waveand Bubble Interface[J].Journal of Zhejiang Sci-Tech University,2015,33-34(自科3):682.
[6]张光,崔宝玲,金英子,等.微型激波管内部激波特性的数值模拟[J].浙江理工大学学报,2015,33-34(自科6):805.
ZHANG Guang,CUI Bao ling,JIN Ying zi,et al.Numerical Simulation of Shock Wave Characteristics in Micro Shock Tubes[J].Journal of Zhejiang Sci-Tech University,2015,33-34(自科3):805.
[7]郝李娜,章利特,王天航,等.激波诱导模型球阵非稳态阻力的数值模拟研究[J].浙江理工大学学报,2016,35-36(自科5):726.
HAO Lina,ZHANG Lite,WANG Tianhang,et al.Numerical Simulation Study on Unsteady Drag Force Acting on Model Sphere Array Induced by Shock Wave[J].Journal of Zhejiang Sci-Tech University,2016,35-36(自科3):726.