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Thermocavitation in a microchannel with a low power light source

机译:具有低功率光源的微通道中的热电偶

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We have studied the formation of vapour bubbles in a microchannel, a confined quasi-two dimensional system where one dimension is much smaller than the other two. The bubble is created by thermocavitation, i.e. by overheating a small region of the fluid, using a continuous wave laser diode. To the best of our knowledge, this is the first time that thermocavitation is achieved with such low power light sources (~100mW). Our fast-imaging experimental results are compared with theoretical models and show good agreement with the predicted bubble growth. Considering the bubble as a piston able to transfer kinetic energy to the fluid, we show that this microfluidic system is a low-cost micro-engine able to convert thermal energy into work.
机译:我们已经研究了微通道中的蒸汽气泡的形成,一个受限的准二维系统,其中一个维度远小于另一个。使用连续波激光二极管,通过热电偶,即通过过热流体的小区域来产生气泡。据我们所知,这是使用这种低功率光源(〜100mW)实现热电偶的第一次。我们的快速成像实验结果与理论模型进行了比较,与预测的泡沫增长显示出良好的一致性。考虑到能够将动能传递给流体的活塞的气泡,我们表明该微流体系统是一种低成本的微发动机,能够将热能转换为工作。

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