Mach reflection of shock and detonation waves in steady supersonic chemically reacting flows

A. V. Trotsyuk, A. Kudryavtsev, M. Ivanov
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引用次数: 2

Abstract

Numerical simulations have been performed to study regular and Mach reflections of oblique shock waves (SW) in a steady supersonic flow of a homogeneous combustible gas mixture and different inflow Mach numbers M/sub in/. The dynamics of the compressible medium was described by two-dimensional unsteady Euler equations. Chemical transformations in the gas mixture were described by a two-stage reaction model. The resultant hyperbolic system of equations was solved numerically using the finite-volume scheme with the fourth-order MUSCL TVD reconstruction and the advanced HLLC algorithm for an approximate solution of the Riemann problem. Integration in time was performed with a second-order accuracy by using recently developed, additive semi-implicit Runge-Kutta methods. It was found that, as for nonreacting SW, there is a dual solution domain, where the existence of both regular reflection (RR) and Mach reflection (MR) is possible under identical flow parameters and geometry. In the case of the MR, the Mach stem (MS) is a section of the front of an overdriven stationary detonation wave (DW). A hysteresis phenomenon was obtained for a varied wedge angle /spl theta/. The dependence of the Mach stem height on the value of /spl theta/ was found. It was showed that for some values of M/sub in/ there may exist a standing MS with a system of unsteady transverse waves on its front. The flow structure behind the Mach stem is similar to the flow structure behind the front of a multifront (cellular) freely propagating DW. Despite the motion of the transverse shocks along the MS and periodic changes in the stem shape, MS, on the average, is a standing wave that slightly oscillates near some equilibrium point. The effect of an existence of strong transverse waves on the MS front to steadiness of Mach reflection was investigated. The present study showed that the Mach stem height for the case of a chemically reacting mixture is greater than that for an inert mixture. For a model combustible mixture with variable amount of heat release, the dependence of the MS height on chemical reaction heat was found. The present study showed that certain types of local perturbations of the free-stream flow might initiate the transition for RR to MR in the dual-solution domain.
稳态超声速化学反应流中激波和爆震波的马赫反射
采用数值模拟的方法,研究了均匀可燃混合气在不同来流马赫数M/sub / /下,斜激波在稳定超音速流动中的规则反射和马赫数反射。可压缩介质的动力学用二维非定常欧拉方程来描述。气体混合物中的化学转化用两阶段反应模型来描述。利用四阶MUSCL TVD重构的有限体积格式和先进的HLLC算法对黎曼问题的近似解进行了数值求解。利用最近开发的加性半隐式龙格-库塔方法,以二阶精度进行时间积分。研究发现,对于非反应的SW,存在一个对偶解域,在相同的流动参数和几何形状下,该域中可能同时存在正则反射(RR)和马赫反射(MR)。在MR的情况下,马赫杆(MS)是一个过度驱动的静止爆震波(DW)的前部的一部分。在不同的楔角/spl θ /下出现了迟滞现象。发现了马赫杆高度与/spl θ /值的相关性。结果表明,对于某些M/sub值,可能存在一个固定的MS,其前缘有一个非定常横波系统。马赫杆后的流动结构类似于多锋面(胞状)自由传播DW锋面后的流动结构。尽管横向激波沿谱线运动,且谱线形状有周期性变化,但谱线平均而言是一个驻波,在某个平衡点附近略有振荡。研究了强横波的存在对马赫反射稳定性的影响。本研究表明,化学反应混合物的马赫杆高度大于惰性混合物的马赫杆高度。对于变放热的可燃混合物模型,发现了质谱高度与化学反应热的关系。本研究表明,自由流动的某些局部扰动可能在双解域中引发从RR到MR的转变。
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