[1] Havlucu M O, Kirkkopru K. Numerical Simulation of Flow in a Solid Rocket Motor: Combustion Coupled Pressure Dependent Regressive Boundary[J]. International Journal of Engineering Science Invention, 2017, 6(3): 54-65.
[2] Attili A, Favini B, Di Giacinto M. Numerical Simulation of Multiphase Flows in Solid Rocket Motors[R]. AIAA 2009-5507.
[3] Yu Y, Liu S Y. Simulation of Two Phase Viscous Flows in a Solid Rocket Motor[C]. Shanghai: New Trends in Fluid Mechanics Research Proceedings of the Fifth International Conference on Fluid Mechanics, 2007.
[4] Gueyffier D, Roux F X, Fabignon Y, et al. High-Order Computation of Burning Propellant Surface and Simulation of Fluid Flow in Solid Rocket Chamber[C]. Cleveland: AIAA/ASME/SAE/ASEE Joint Propulsion Conference, 2014.
[5] WANG Jian-ru, HE Guo-qiang, LI Qiang, et al. Numerical Analysis of Flow Instability in Segmented SRM[J]. Journal of Propulsion Technology, 2013, 34(1): 95-100.
[6] Fabignon Y, Dupays J, Avalon G, et al. Instabilities and Pressure Oscillations in Solid Rocket Motors[J]. Aerospace Science and Technology, 2003, (7): 191-200.
[7] Guéry J F, Ballereau S, Franck G. Thrust Oscillations in Solid Rocket Motors [R]. AIAA 2008-4979.
[8] YANG Shang-rong, LIU Pei-jin, WEI Xiang-geng, et al. A Study of Analysis Method for Hydrodynamic Stabilities of Solid Rocket Motors with Side-Induced Flow[J].Journal of Propulsion Technology, 2013, 34(7): 925-931.
[9] Dotson K W, Koshigoe S, Pace K K. Vortex Shedding in a Large Solid Rocket Motor without Inhibitors at the Segment Interfaces[J]. Journal of Propulsion and Power, 1997, 3(2): 197-206.
[10] Najjar F M, Ferry J P, Haselbacher A, et al. Simulations of Solid-Propellant Rockets: Effects of Aluminum Droplet Size Distribution[J]. Journal of Spacecraft & Rockets, 2015, 43(6): 1258-1270.
[11] Attili A, Favini B, Giacinto M D, et al. Numerical Simulation of Multiphase Flows in Solid Rocket Motors[C]. Denver: 45th AIAA/ASME/SAE/ASEE Joint Propulsion Conference and Exhibit, 2006.
[12] LI Teng, FANG Shu-zhou, LIU Xu-hui, et al. Numerical Study on Two Dimensional Adiabatic Microscale Combustion Model for Solid Propellant[J]. Journal of Propulsion Technology, 2016, 37(12): 2385-2393.
[13] Kaili Zhang, Chou S K, Simon S Ang. MEMS-Based Solid Propellant Microthruster Design, Simulation, Fabrication, and Testing[J]. Journal of Microelectromechanical Systems, 2004, 13(2): 165-175.
[14] Bucharsky V L. Two-Step Difference Schemes of the Method of Approximants for Solving Quasilinear One-Dimensional Hyperbolic Equations[J]. Eastern-European Journal of Enterprise Technologies, 2013, 4 (62): 34-38.
[15] Bucharsky V L. Finite-Difference Schemes of the Method of Approximants for Solving Multidimensional Quasilinear Hyperbolic Equations[J]. Eastern-European Journal of Enterprise Technologies, 2013, 4 (63): 64-67. * Received: 12 June 2017;Accepted for publication: 22 July 2017.Author:Valeriy BUCHARSKYI,Male,Doctor,Associate professor,Field of research: numerical simulation of rocket engines. E-mail: bucharsky@mail.ruCorresponding author:ZHANG Li-hui,Female,Doctor,Associate professor,Field of research: design and numerical simulation of liquid rocket engine.E-mail: zhanglihui@buaa.edu.cn(编辑:刘萝威)
|