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Laser generated acoustic emission in water

机译:激光在水中产生声发射

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A Q-switched Nd-YAG laser light source (pulse duration of 8 ns with a maximum energy of 50 mJ at a wavelength of 1.064 urn) was launched through an optical fibre (core diameter 800 μm and a numerical aperture (NA) of 0.25) delivery system into a tank containing natural water. The resulting acoustic wave generated by thermoelastic process was picked up using a broadband AE transducer (frequency bandwidth of 0-1 MHz) placed along the optical axis of the optical fibre carrying the laser source. Results of the experiments show that, the mean square voltage of the photo-acoustic emission (PAE) generated decreases with increase in the source-to-transducer distance in the range of 10-50 mm. Also the measurements show a good degree of repeatability at different input laser power levels. The result of the experiment is compared with an analytical model that has been proposed for this configuration. Application for on-line monitoring of fluid based processes is envisaged.
机译:通过光纤(纤芯直径为800μm,数值孔径(NA)为0.25)发射Q开关Nd-YAG激光光源(脉冲持续时间为8 ns,最大能量为50 mJ,波长为1.064 urn)。 )输送系统放入装有天然水的水箱中。通过沿携带激光源的光纤的光轴放置的宽带AE换能器(频率带宽为0-1 MHz),拾取通过热弹性过程产生的声波。实验结果表明,所产生的光声发射(PAE)的均方电压随着源到传感器距离的增加而减小,范围为10-50 mm。在不同的输入激光功率水平下,测量结果也显示出良好的重复性。将实验结果与针对该配置建议的分析模型进行比较。设想了基于流体的过程的在线监测的应用。

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