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Accuracy and uncertainty of single-shot, nonresonant laser-induced thermal acoustics

机译:单发,非共振激光感应热声学的准确性和不确定性

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摘要

We study the accuracy and uncertainty of single-shot nonresonant laser-induced thermal acoustics measurements of the speed of sound and the thermal diffusivity in unseeded atmospheric air from electrostrictive gratings as a function of the laser power settings. For low pump energies, the measured speed of sound is too low, which is due to the influence of noise on the numerical data analysis scheme. For pump energies comparable to and higher than the breakdown energy of the gas, the measured speed of sound is too high. This is an effect of leaving the acoustic limit, and instead creating finite-amplitude density perturbations. The measured thermal diffusivity is too large for high noise levels but it decreases below the predicted value for high pump energies. The pump energy where the error is minimal coincides for the speed of sound and for the thermal diffusivity measurements. The errors at this minimum are 0.03% and 1%, respectively. The uncertainties for the speed of sound and the thermal diffusivity decrease monotonically with signal intensity to 0.25% and 5%, respectively.
机译:我们研究了单发非共振激光诱导的热声测量的准确性和不确定性,这些测量是电致伸缩光栅在非播种大气中的声速和热扩散率的函数,它是激光功率设置的函数。对于低泵浦能量,测得的声速太低,这是由于噪声对数值数据分析方案的影响所致。对于与气体的击穿能量相当或更高的泵浦能量,测得的声速太高。这是离开声学极限,而是创建有限振幅密度扰动的效果。对于高噪声水平,测得的热扩散率太大,但对于高泵浦能量,它的热扩散率降低到了预测值以下。误差最小的泵浦能量与声速和热扩散率测量值一致。最小误差为0.03%和1%。声速和热扩散率的不确定性随信号强度分别单调降低至0.25%和5%。

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