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NONUNIFORM LASER IGNITION IN ENERGETIC MATERIALS

机译:能量材料中激光的不均匀点火

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摘要

Laser ignition of energetic materials is typically described in terms of a one-dimensional homogeneous ignition model. However, the Gaussian energy distribution from a laser can induce multidimensional effects on ignition. A two-dimensional numerical model that simulates radiant heating and subsequent ignition of energetic materials was developed. A laser with a Gaussian energy distribution was used as the external energy source applied to the flat surface of a cylindrical pellet. The nonuniform behavior of thermal ignition leads to radially dependent ignition times, temperatures, and energy associated with the front surface of the pellet. Existing experimental ignition data was compared to the numerical results. The model shows the importance of a two-dimensional analysis for ignition because the nonuniform external heat source can result in the formation of localized heating that will develop into nonplanar flame propagation. The model is compared to experimental results that further validate the importance of a two-dimensional ignition model and show that ignition occurs first in the center of the pellet where the Gaussian beam intensity is greatest.
机译:高能材料的激光点火通常根据一维均匀点火模型来描述。但是,来自激光的高斯能量分布会引起点火的多维影响。建立了二维数值模型,该模型模拟了辐射加热和高能材料的后续点火。具有高斯能量分布的激光器被用作施加到圆柱形颗粒的平坦表面上的外部能量源。热点火的不均匀行为导致径向相关的点火时间,温度以及与颗粒前表面相关的能量。将现有的实验点火数据与数值结果进行比较。该模型显示了二维分析对于点火的重要性,因为不均匀的外部热源会导致局部加热的形成,该局部加热将发展为非平面火焰传播。将模型与实验结果进行了比较,实验结果进一步验证了二维点火模型的重要性,并表明点火首先发生在高斯光束强度最大的小球中心。

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