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Electrical and Spectroscopic Studies of the Effects of DC Electric Fields on Pre-Mixed Propane-Air Flames

机译:直流电场对预混合丙烷空气火焰影响的电学和光谱学研究

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摘要

The effects of DC electric fields on temperature distributions within pre-mixed propane-air flames have been measured by the technique of thin filament pyrometry (TFP). We have focussed on the dramatic electric-field-induced modifications of the shape and size of the inner cone and the concomitant changes in the temperature profiles of fuel-rich mixtures with equivalence ratios of 1-1.35. Temperature profile measurements show large decreases in the reaction zone volume that is dependent upon the applied voltage polarity, indicating that electron impact excitation is not responsible for the observed effects. Additionally, the observed flame temperature profile modifications are not strongly dependent on the flow velocity. The TFP results have been verified by spectroscopic measurements of the rotational temperature of the CH(A2Δ - X2Π) emission band at 431 nm. Due to the better coupling of the field to the flame in the present experiments, the magnitude of the externally applied voltage necessary to produce large changes in inner cone geometry are substantially smaller than those used in previous experiments. Electrical measurements that have been made include vertical and horizontal variations of the floating potential within the flames, and bulk current and voltage characteristics. High-speed imaging of the flame response to pulsed DC voltage has been performed to investigate the dynamics of the ionic wind effects. All measurements are consistent with the observed flame perturbations being a fluid mechanical response to the applied field.
机译:直流电场对丙烷-空气预混火焰内温度分布的影响已通过细丝高温法(TFP)进行了测量。我们集中研究了电场引起的内锥形状和尺寸的巨大变化,以及当量比为1-1.35的富燃料混合物的温度曲线的随之变化。温度曲线测量结果表明,反应区的体积大大减小,这取决于所施加的电压极性,表明电子冲击激发与观察到的效应无关。另外,观察到的火焰温度分布的变化并不强烈依赖于流速。通过光谱测量CH(A2Δ-X2Π)发射带在431 nm处的旋转温度已验证了TFP结果。由于在本实验中磁场与火焰之间的耦合更好,因此产生内部圆锥几何形状的较大变化所必需的外部施加电压的幅度明显小于先前实验中使用的幅度。进行的电气测量包括火焰中浮动电位的垂直和水平变化以及体电流和电压特性。已经对火焰对脉冲直流电压的响应进行了高速成像,以研究离子风效应的动力学。所有测量均与观察到的火焰扰动相一致,火焰扰动是对施加场的流体机械响应。

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