ZHAO Xing-yu, WANG Yi, FAN Xiao-qiang, XU Shang-cheng. Internal Flow Field Evolution Characteristics for Inlet Cover Separation of High Speed Inlet[J]. Journal of Propulsion Technology, 2021, 42(5): 970-979.
[1] 黄 伟, 陈 逖, 罗世彬, 等. 临近空间飞行器研究现状分析[J]. 飞航导弹, 2007, 37(10): 28-31.
[2] 白晓征, 刘 君, 郭 正, 等. 冲压发动机进气道压力振荡过程的数值研究[J]. 推进技术, 2008, 29(5): 562-565.
[3] Hass N, Smart M, Paull A. Flight Data Analysis of the HYSHOT 2[C]. Capua: AIAA/CIRA 13th International Space Planes and Hypersonics Systems and Technologies Conference, 2005.
[4] Walker S H, Rodgers F C, Esposita A L. Hypersonic Collaborative Australia/United States Experiment(HyCAUSE)[R]. AIAA 2005-3254.
[5] Gruber M R, Jackson K, Jackson T, et al. Hydrocarbon-Fueled Scramjet Combustor Flowpath Development for Mach 6-8 HIFiRE Flight Experiments[C]. Newton: 55th JANNAF Propulsion Meeting, 2008.
[6] Haudrich D, Brase L. Flutter and Divergence Assessment of the HyFly Missile[R]. AIAA 2009-2462.
[7] Zhu Guoxiang, Wang Lei. Experimental Investigation of Dynamic Separation for a Hypersonic Inlet Cover in Mach 6 Flow[R]. AIAA 2016-4111.
[8] Xun W, Liu J, Li J, et al. Design and Numerical Simulation of a Clamshell-Shaped Inlet Cover for Air-Breathing Hypersonic Vehicles[J]. Journal of Zhejiang University-SCIENCE A, 2019, 20(5): 347-357.
[9] 范庆志, 孙 秦. 飞行器头罩分离技术及设计方案分析研究[J]. 机械设计与制造, 2008, (9): 8-10.
[10] 王 巍, 刘 君, 白晓征, 等. 非结构动网格技术及其在超声速飞行器头罩分离模拟中的应用[J]. 空气动力学学报, 2008, 26(1): 131-135.
[11] 刘 君, 王 巍, 郭 正, 等. 稠密大气层内火箭头罩动态分离过程数值模拟[J]. 弹道学报, 2006, 18(3): 34-38.
[12] Nakahashi K, Togashi F, Sharov D. Intergrid-Boundary Definition Method for Overset Unstructured Grid Approach[J]. AIAA Journal, 2000, 38(11): 2077-2084.
[13] Cho K W, Kwon J H, Lee S. Development of a Fully Systemized Chimera Methodology for Steady/Unsteady Problems[J]. Journal of Aircraft, 1999, 36(6): 973-980.
[14] 唐志共, 李 彬, 郑 鸣, 等. 飞行器外挂投放数值模拟[J]. 空气动力学学报, 2009, 27(5): 592-596.
[15] 田书玲, 伍贻兆, 夏 健, 等. 用动态非结构重叠网格法模拟三维多体相对运动绕流[J]. 航空学报, 2007, 28(1): 46-51.
[16] 刘 超, 刘仙名, 王立强. 一种基于新型动态混合重叠网格的数值模拟方法[J]. 航空兵器, 2016, (6): 44-48.
[17] Menter F R. Influence of Freestream Values on k-ω Turbulence Model Predictions[J]. AIAA Journal, 1992, 30(6): 1657-1659.
[18] Abid R. Evaluation of Two-Equation Turbulence Models for Predicting Transitional Flows[J]. International Journal of Engineering Science, 1993, 31(6): 831-840.
[19] Reynolds W C. Fundamentals of Turbulence for Turbulence Modelling and Simulation[R]. Belgium: Von Karman Institute Agard, 1987.
[20] Shih T H, Liou W W, Shabbir A, et al. A New k-ε Eddy Viscosity Model for High Reynolds Number Turbulent Flows[J]. Computers & Fluids, 1995, 24(3): 227-238.
[21] Kim S E, Choudhury D, Patel B: Computations of Complex Turbulent Flows Using the Commercial Code Fluent[M]. Berlin: Springer, 1999.
[22] Ogawa H, Grainger A, Boyce R R. Inlet Starting of High-Contraction Axisymmetric Scramjets[J]. Journal of Propulsion and Power, 2010, 26(6): 1247-1258.
[23] 张来平, 邓小刚, 张涵信. 动网格生成技术及非定常计算方法进展综述[J]. 力学进展, 2010, (4): 424-447.
[24] Heim E R. CFD Wing/Pylon/Finned Store Mutual Interference Wind Tunnel Experiment[R]. TN: Arnold Engineering Development Center Arnold AFS, ADB 152669, 1991.
[25] 杨 磊. 基于非结构嵌套网格的六自由度武器投放过程数值研究[D]. 南京: 南京航空航天大学, 2014.
[26] 袁 亚. 带头罩折叠翼飞行器多体分离数值模拟[D]. 北京: 中国航天科技集团公司第一研究院, 2017.
[27] Loth E, Kailasanath K, L?hner R. Supersonic Flow over an Axisymmetric Backward-Facing Step[J]. Journal of Spacecraft and Rockets, 1992, 29(3): 352-359.
[28] Guo G M, Liu H, Zhang B. Numerical Study of Active Flow Control over a Hypersonic Backward-Facing Step Using Supersonic Jet in Near Space[J]. Acta Astronautica, 2017, 132: 256-267.
[29] Alvi F S, Settles G S. Physical Model of the Swept Shock Wave/Boundary-Layer Interaction Flowfield[J]. AIAA Journal, 1992, 30(9): 2252-2258.