首页> 外文会议>International Symposium on Combustion; 20060805-11; University of Heidelberg(DE) >Study of a non-equilibrium pulsed nanosecond discharge at atmospheric pressure using coherent anti-Stokes Raman scattering
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Study of a non-equilibrium pulsed nanosecond discharge at atmospheric pressure using coherent anti-Stokes Raman scattering

机译:使用相干反斯托克斯拉曼散射研究大气压下非平衡脉冲纳秒放电

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Time-resolved CARS measurements of rotational and vibrational temperatures of nitrogen in nanosecond pulsed discharge at atmospheric pressure are reported. Experiment is first performed with a discharge in pure air where spatial and temporal evolution of temperature distribution is recorded by delaying the probe lasers relative to the discharge pulse in the range 10 ns to 1 ms. The experiments demonstrate that a strong vibrational non-equilibrium can be sustained in N_2 at 1 bar. The effect of different colliding partners on the vibrational relaxation of N_2 is studied for discharges in CH_4/air mixtures with different equivalence ratio. The observed temperature distributions suggest that thermal equilibrium is not fully achieved in this mixture. Effect of the discharge on the ignition of a premixed CH_4/air flame is also investigated for various equivalence ratio.
机译:报告了在大气压下纳秒脉冲放电中氮气的旋转和振动温度的时间分辨CARS测量。首先在纯空气中进行放电实验,通过将探测激光相对于放电脉冲的延迟时间在10 ns至1 ms范围内,记录温度分布的时空变化。实验表明,在1 bar的N_2中可以保持强烈的振动非平衡。研究了不同当量比的CH_4 /空气混合物中不同碰撞伙伴对N_2振动弛豫的影响。观察到的温度分布表明在该混合物中不能完全实现热平衡。对于各种当量比,还研究了放电对预混合CH_4 /空气火焰着火的影响。

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