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Nucleation and sliding growth of boiling bubbles on locally heated silicon surfaces

机译:在局部加热的硅表面上沸泡沸泡的成核和滑动生长

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In this work, nucleate pool boiling is investigated experimentally on smooth monocrystalline silicon substrates with or without cavities. Different from the previous studies, the substrates are locally heated by an H-shaped titanium thin-film heater deposited on the back surface of the substrate. High-speed infrared thermography (HSIR) synchronized with high-speed video (HSV) is used to measure wall temperature evolutions and record bubble dynamic behaviors. On the basis of HSIR images, the variation of bubble locations on the wall is precisely located. The results show that the boundary of heater changes bubble dynamics significantly. For the first time, a very interesting bubble sliding from the nucleation site to the heater boundary is observed on the substrates with or without cavities. However, this phenomenon was never observed on infinitely larger heated substrates. The transient evolutions of wall temperature indicate that an asymmetric temperature profile occurs beneath the bubble due to bubble sliding. The asymmetric temperature profile is used to distinguish the sizes of microlayer and macrolayer. Finally, a simple model is proposed to explain the sliding mechanism.
机译:在这项工作中,实验在具有或不具有空腔的平滑单晶硅基板上实验研究了核心池沸腾。与先前的研究不同,基板通过沉积在基板的后表面上的H形钛薄膜加热器局部加热。与高速视频(HSV)同步的高速红外热成像(HSIR)用于测量墙体温度演进和记录泡沫动态行为。在HSIR图像的基础上,墙壁上的气泡位置的变化精确定位。结果表明加热器的边界显着改变泡沫动力学。首次,在有或没有空腔的基板上观察到从成核位点滑动到加热器边界的非常有趣的气泡。然而,在无限较大的加热基材上从未观察到这种现象。壁温的瞬态演进表明由于气泡滑动,在气泡下发生不对称温度曲线。不对称温度曲线用于区分微层和大罗基罗层的尺寸。最后,提出了一种简单的模型来解释滑动机制。

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