Pressure oscillations and instability of working processes in the combustion chambers of solid rocket motors

被引:29
|
作者
Emelyanov, V. N. [1 ]
Teterina, I. V. [1 ]
Volkov, K. N. [2 ]
Garkushev, A. U. [3 ]
机构
[1] Balt State Tech Univ, Fac Rocket & Space Engn, St Petersburg 190005, Russia
[2] Kingston Univ, Fac Sci Engn & Comp, London SW15 3DW, England
[3] Peter Great St Petersburg Polytech Univ, Inst Mil Engn & Safety Res, St Petersburg 195251, Russia
关键词
Solid rocket motor; Acoustic intability; Injection-driven flow; Two-phase flow; Particle; Turbulence; Dispersion; NAVIER-STOKES EQUATIONS; PRANDTL-MEYER WAVE; UNSTEADY-FLOW; PROPELLANT; SIMULATION; STABILITY; DYNAMICS; IGNITION;
D O I
10.1016/j.actaastro.2016.09.029
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
Metal particles are widely used in space engineering to increase specific impulse and to supress acoustic instability of intra-champber processes. A numerical analysis of the internal injection-driven turbulent gas particle flows is performed to improve the current understanding and modeling capabilities of the complex flow characteristics in the combustion chambers of solid rocket motors (SRMs) in presence of forced pressure oscillations. The two-phase flow is simulated with a combined Eulerian-Lagrangian approach. The Reynolds averaged Navier Stokes equations and transport equations of k-epsilon model are solved numerically for the gas. The particulate phase is simulated through a Lagrangian deterministic and stochastic tracking models to provide particle trajectories and particle concentration. The results obtained highlight the crucial significance of the particle dispersion in turbulent flowfield and high potential of statistical methods. Strong coupling between acoustic oscillations, vortical motion, turbulent fluctuations and particle dynamics is observed.
引用
收藏
页码:161 / 171
页数:11
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