首页> 外文会议>Conference on Laser-Assisted Micro- and Nanotechnologies 2003; Jun 29-Jul 3, 2003; St. Petersburg, Russia >Shock Waves and Cavitations Bubbles in Water and Isooctane generated by Nd:YAG Laser. Experimental and Theoretical Results
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Shock Waves and Cavitations Bubbles in Water and Isooctane generated by Nd:YAG Laser. Experimental and Theoretical Results

机译:Nd:YAG激光在水和异辛烷中产生的冲击波和空化气泡。实验和理论结果

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Temporal evolution of laser generated cavitation bubbles and shock waves were studied. Q-switched Nd-Yag laser pulses at 1064 nm are focused into the liquid. An Imager 3 CCD camera with multi exposure mode allows recording of 10 images with minimal exposure delay of 100 ns and minimal exposure time of 100 ns. Illumination is provided by xenon flash lamp for single exposure (shock wave recording) and by halogen lamp for multi exposure mode (bubble recording). Distilled water and a retrograde fluid, isooctane, have been under investigation to identify the differences in the cavitation process and shock wave propagation. The calculation of the shock wave velocities in water and isooctane are based on image recording at constant exposure time of 100 ns and using laser differential interferometry. Strong differences of bubble oscillation were observed in water and isooctane. Gilmore's model is used for numerical simulation of bubble dynamics.
机译:研究了激光产生的空化气泡和冲击波的时间演变。 1064 nm处的Q开关Nd-Yag激光脉冲聚焦到液体中。具有多重曝光模式的Imager 3 CCD相机可以以100 ns的最小曝光延迟和100 ns的最小曝光时间记录10张图像。氙气闪光灯提供单次曝光(冲击波记录)的照明,卤素灯提供多重曝光模式(气泡记录)的照明。已对蒸馏水和逆行流体异辛烷进行了研究,以查明空化过程和冲击波传播的差异。在水和异辛烷中的冲击波速度的计算基于在100 ns的恒定曝光时间下的图像记录并使用激光微分干涉法。在水和异辛烷中观察到气泡振荡的强烈差异。 Gilmore模型用于气泡动力学的数值模拟。

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