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Acoustic response of near-equilibrium diffusion flames with large activation energies

机译:具有大激活能量的近平衡扩散火焰的声学响应

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The interaction of nonpremixed flamelets with acoustic pressure waves of large characteristic wavelength, central to the development of acoustic instabilities in liquid-propellant rocket engines, is investigated by evaluating the periodic response of a counterflow diffusion flame subject to a harmonic pressure variation. An irreversible step with an Arrhenius rate having a large activation energy is used to model the exothermic reaction between the fuel and the oxidizer. The interactions of the chemistry with the prescribed time-dependent pressure variations are analyzed by numerical and asymptotic methods for large values of the Zel'dovich number β ? 1 measuring the temperature dependence of the heat-release rate and small values of the relative amplitude ∈ ? 1 of the pressure fluctuation, with the the product β∈ assumed to be of order unity in the distinguished limit addressed. Evaluations of the local Rayleigh index for β∈? 1 indicate that finite-rate chemical-kinetic effects dominate the acoustic pressure response of strained flamelets under conditions near diffusion-flame extinction. For robust, diffusion-controlled flames, on the other hand, unsteady modifications to the outer chemical-equilibrium transport regions flanking the reaction layer are more important but produce only moderate effects on acoustic instabilities.
机译:通过评估逆向扩散火焰对谐波压力变化的周期性响应,研究了具有大特征波长的声压波长的非特征波长的声压的相互作用,对液体推进剂火箭发动机中的声学稳定性的核心进行研究。具有大激活能量的Arrhenius速率的不可逆步骤用于模拟燃料和氧化剂之间的放热反应。通过数值和渐近方法分析化学与规定的时间依赖性压力变化的相互作用,用于Zel'dovich号β的大值的数值和渐近方法进行分析? 1测量热释放速率的温度依赖性和相对幅度的小值∈? 1的压力波动,随着产品β∈的假设在寻址的杰出极限中具有统一。 β∈本地瑞利指数的评价?图1表明有限速率化学 - 动力学效应在扩散火焰灭火附近的条件下主导应变挥发物的声压响应。对于鲁棒,扩散控制的火焰,另一方面,对外化学平衡传输区域的不稳定修改侧翼的反应层更重要,但仅对声学稳定性产生适度的影响。

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