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Imaging Aluminum Particles in Solid-Propellant Flames Using 5 kHz LIF of Al Atoms

机译:使用5 kHz LIF铝原子对固体推进剂火焰中的铝颗粒进行成像

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摘要

Laser-induced fluorescence imaging of aluminum atoms (Al-PLIF) is used to analyze the spatio-temporal behavior of aluminized solid propellant combustion. Using alternating LIF and chemiluminescence emission images of the particles in the gaseous and liquid phase evolving close to and far above the dynamically varying propellant surface, sequences of images were recorded and analyzed. The good sensitivity achieved enabled us to track the dynamics of the flame in the vicinity of particles detected all along the flame extension and up to 1.5 MPa. Analysis of wide-field images enabled droplet velocity measurements due to the high LIF sampling rate (5 kHz). The observed typical plume structures were in good agreement with alumina-formation prediction and previous shadowgraphy visualization. High-resolution sequences of images showed gaseous distribution behavior around the molten particles. The Al vapor phase was thus found to extend between 3 and 6.5 radii around the particles. Particle detachment dynamics were captured just above the propellant surface.
机译:铝原子的激光诱导荧光成像(Al-PLIF)用于分析镀铝固体推进剂燃烧的时空行为。使用在动态变化的推进剂表面附近和远上方演化的气相和液相中的粒子的交替LIF和化学发光发射图像,记录并分析图像序列。达到的良好灵敏度使我们能够跟踪整个火焰延伸范围内(最高1.5 MPa)附近检测到的颗粒附近的火焰动力学。由于具有高LIF采样率(5 kHz),因此对宽视场图像进行分析可实现液滴速度测量。观察到的典型羽状结构与氧化铝的形成预测和先前的影线图可视化非常吻合。高分辨率的图像序列显示了熔融颗粒周围的气体分布行为。因此发现Al蒸气相在颗粒周围延伸3至6.5半径。刚好在推进剂表面上方捕获了粒子脱离动力学。

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