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Thermomechanics of laser-induced shock waves in combustible mixtures

机译:可燃混合物中激光诱导的冲击波的热机械

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摘要

In this study, a combined experimental and numerical approach is taken to further investigate the thermomechanics of shock wave formation in combustible mixtures. This study focuses on several gas mixtures including air, methane/, methane/air, and biogas/air. The lean and stoichiometric combustible mixtures are studied at three different laser energy levels. The Jones blast wave theory is used to calculate the energy involved in development of the resulting shock waves and used to specify the initial conditions for the plasma in simulations. In addition, interferometry is used to gain insights into the thermodynamic conditions within the plasma kernel, for validation of the numerical model results. The energies calculated for the different mixtures studied show that shock waves generated in the combustible mixture likely gain energy early in the breakdown process from exothermic chemical reactions. Shock wave results from experiment are shown to be replicated by the model, and the variations of the density inside of the hot core region are in agreement between the simulation and experimental results.
机译:在该研究中,采用组合的实验和数值方法进一步研究可燃混合物中冲击波形成的热电学。本研究专注于几种气体混合物,包括空气,甲烷/,甲烷/空气和沼气/空气。在三种不同的激光能级中研究瘦和化学计量可燃混合物。琼斯爆发波理论用于计算所产生的冲击波的开发中所涉及的能量,并用于在模拟中指定血浆的初始条件。此外,干涉测量用于在等离子体内核内的热力学条件下,用于验证数值模型结果的洞察力。所研究的不同混合物计算的能量表明,在可燃混合物中产生的冲击波可能从放热的化学反应中提前获得能量。实验的冲击波结果被模型复制,并且在仿真和实验结果之间达成一致的热核区域内的密度的变化。

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