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首页> 外文期刊>Experimental Mechanics >Pointwise Explosive-Induced Pyroshock Wave Prediction Based on Numerical Conditioning of Laser Shocks
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Pointwise Explosive-Induced Pyroshock Wave Prediction Based on Numerical Conditioning of Laser Shocks

机译:基于激光冲击数值条件的点状炸药致爆波预测

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摘要

A pointwise explosive-induced pyroshock prediction scheme based on the numerical conditioning of laser shocks is proposed to nondestructively predict a point source pyroshock at any point. In the pyroshock prediction scheme, the estimation models of the subband envelopes of pyroshocks incorporated into the signal processing algorithm were used to numerically condition the laser shocks. The conditioned laser shocks showed the ability to predict the SRS and time-domain waveform of pyroshock signals at any point with the averaged mean acceleration difference (MAD) of 27.25 % and the averaged peak-to-peak acceleration difference (PAD) of 18.13 % respectively. Using the prediction scheme, two-dimensional (2-D) spatial conditioned laser shocks were obtained and used to visualize the pyroshock wave propagation in an interest area of 100 x 100 mm(2).
机译:提出了一种基于激光冲击数值条件的逐点炸药诱发的热震预测方案,以在任意点无损预测点源热震。在热震预测方案中,信号处理算法中使用的热震子带包络的估计模型用于对激光冲击进行数值处理。调节后的激光冲击显示了在任何点预测热震信号的SRS和时域波形的能力,平均平均加速度差(MAD)为27.25%,平均峰峰加速度差(PAD)为18.13%分别。使用该预测方案,获得了二维(2-D)空间条件化的激光冲击,并将其用于可视化在100 x 100 mm(2)感兴趣区域中的热震波传播。

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