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Laser-induced optical breakdown and shock waves in combustible mixtures near flammability limits

机译:激光诱导的光学击穿和易燃混合物中的易燃混合物的冲击波

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Optical breakdown and shock wave generation precede the emergence of a self-sustained combustion wave during laser-induced ignition. Understanding the breakdown process in reactive and non-reactive gases is crucial to developing quantitative predictive models of successful laser-induced ignition. In this study we use a focused 532 nm Nd:YAG laser to induce optical breakdown in air and combustible mixtures of methane/air and biogas/air in a constant volume reactor. The resulting shock wave propagation is characterized by means of high-speed Schlieren imaging and interpreted according to the blast wave theory. Differences between the shock dynamics of reacting and non-reacting gases are brought out, thereby shedding light on the contribution of heat release to the overall shock dynamics in the case of reacting gases. Further, visualization of these early processes using interferometry highlights differences in the evolution of the laser-induced plasma near lean flammability limits.
机译:激光诱导点火期间自持续燃烧波的出现前来的光学击穿和冲击波。理解反应性和非反应气体中的击穿过程对于开发成功激光诱导点火的定量预测模型至关重要。在这项研究中,我们使用聚焦的532nm Nd:YAG激光器诱导恒定体积反应器中的甲烷/空气和沼气/空气中的空气和可燃混合物中的光学击穿。通过高速Schlieren成像和根据爆发波理论解释的方式,所得到的冲击波传播的特征在于。使反应和非反应气体的冲击动力学之间的差异产生出来,从而在反应气体的情况下脱离热释放到整体冲击动力学的贡献。此外,使用干涉测量的这些早期过程的可视化突出了激光诱导的等离子体的演变的差异,倾向于易燃性限制。

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