论文标题

部分可观测时空混沌系统的无模型预测

Cavitation induced by pulsed and continuous-wave fiber lasers in confinement

论文作者

Schoppink, Jelle J., Krizek, Jan, Moser, Christophe, Rivas, David Fernandez

论文摘要

已经研究了用激光产生的气泡,以便在各种微流体设备(例如无针喷射器)中的液体微型射流机构的潜在用途使用。在这里,我们报告了连续波(CW)和开放式微流体毛细管内的脉冲激光研究气泡形成的研究。这导致了激光源在不同时间尺度(MS和NS)中发出光的气泡之间的直接比较。气泡动力学代表一个重要的参数,因为它确定了随后的液体射流的可用动能。 我们表明,气泡生长速率随CW和脉冲激光器的传递能量呈线性增加。实验表明,在相等的吸收系数下,两种激光器的气泡生长相似,这表明它们可以互换用于喷气生成。但是,由CW激光器产生的气泡需要更多的光能,这是由于散热引起的。此外,CW激光器产生的气泡显示出相同初始条件的大小和生长速率的变化稍大,我们将其归因于热浪费的随机性质。

Bubbles generated with lasers under confinement have been investigated for their potential use as the driving mechanism for liquid micro-jets in various microfluidic devices, such as needle free jet injectors. Here, we report on the study of bubble formation by a continuous-wave (CW) and a pulsed laser inside an open-ended microfluidic capillary. This results in a direct comparison between bubbles generated by laser sources emitting light in different time scales (ms and ns). The bubble kinetics represents an important parameter because it determines the available kinetic energy for a subsequent liquid jet. We show that the bubble growth rate increases linearly with the delivered energy for both the CW and the pulsed laser. Experiments show that at equal absorption coefficient, the bubble growth for both lasers is similar, which indicates that they can be used interchangeably for a jet generation. However, bubbles generated by a CW laser require more optical energy, which is due to heat dissipation. Furthermore, the bubbles generated by the CW laser show a slightly larger variation in size and growth rate for identical initial conditions, which we attribute to the stochastic nature of thermocavitation.

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