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Verified and validated calculation of unsteady dynamics of viscous hydrogen-air detonations

机译:验证性和验证性的粘性氢-空气爆轰的非稳态动力学计算

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摘要

The dynamics of one-dimensional, piston-driven hydrogen-air detonations are predicted in the presence of physical mass, momentum and energy diffusion. The calculations are automatically verified by the use of an adaptive wavelet-based computational method which correlates a user-specified error tolerance to the error in the calculations. The predicted frequency of 0.97 MHz for an overdriven pulsating detonation agrees well with the 1.04 MHz frequency observed by Lehr in a shock-induced combustion experiment around a spherical projectile, thus giving a limited validation for the model. A study is performed in which the supporting piston velocity is varied, and the long time behaviour is examined for an initially stoichiometric mixture at 293.15 K and 1 atm. Several distinct propagation behaviours are predicted: a stable detonation, a high-frequency pulsating detonation, a pulsating detonation with two competing modes, a low-frequency pulsating detonation and a propagating detonation with many active frequencies. In the low-frequency pulsating mode, the long time behaviour undergoes a phenomenon similar to period-doubling. Harmonic analysis is used to examine how the frequency of the pulsations evolves as the supporting piston velocity is varied. It is found that the addition of viscosity shifts the neutral stability boundary by about 2% with respect to the supporting piston velocity. As the supporting piston velocity is lowered, the intrinsic instability grows in strength, and the effect of viscosity is weakened such that the results are indistinguishable from the inviscid predictions.
机译:在存在物理质量,动量和能量扩散的情况下,预测了一维活塞驱动的氢-空气爆轰的动力学。通过使用基于自适应小波的计算方法,可以自动验证计算结果,该方法将用户指定的容错能力与计算中的错误相关联。过驱动脉冲爆震的预测频率0.97 MHz与Lehr在球形弹丸周围的激振燃烧实验中观察到的1.04 MHz频率非常吻合,因此对该模型的验证有限。进行了一项研究,其中改变了支撑活塞的速度,并检查了在293.15 K和1个大气压下初始化学计量混合物的长时间行为。预测了几种不同的传播行为:稳定的爆震,高频脉冲爆震,具有两种竞争模式的脉冲爆震,低频脉冲爆震和许多活动频率的传播爆震。在低频脉动模式下,长时间行为会发生类似于周期倍增的现象。谐波分析用于检查随着辅助活塞速度的变化,脉动的频率如何演变。已经发现,粘度的增加使中性稳定性边界相对于支撑活塞速度移动了约2%。随着支撑活塞速度的降低,固有的不稳定性会增加强度,并且粘度的影响会减弱,从而使结果与无形的预测无法区分开。

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