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High-speed X-ray imaging of the Leidenfrost collapse

机译:莱顿弗罗斯坍塌的高速X射线成像

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摘要

The Leidenfrost layer is characterized by an insulating vapor film between a heated surface and an ambient liquid. The collapse of this film has been canonically theorized to occur from an interfacial instability between the liquid and vapor phases. The interfacial instability alone, however, is insufficient to explain the known influence of the surface on the film collapse process. In this work, we provide visual evidence for two key mechanisms governing the film collapse: the interfacial instability, and the nucleation of vapor upon multiple non-terminal liquid-solid contacts. These results were obtained by implementing high-speed X-ray imaging of the film collapse on a heated sphere submerged in liquid-water. The X-ray images were synchronized with a second high-speed visible light camera and two thermocouples to provide insight into the film formation and film collapse processes. Lastly, the dynamic film thickness was quantified by analysis of the X-ray images. This helped assess the influence of surface roughness on the disruption of the film. The results of this work encourage further investigation into non-linear stability theory to consolidate the role of the surface on the liquid-vapor interface during the film collapse process.
机译:莱顿弗罗斯特层的特征在于加热表面和周围液体之间的绝缘蒸汽膜。从理论上讲,该膜的坍塌是由液相和气相之间的界面不稳定性引起的。然而,仅界面不稳定性不足以解释表面对薄膜塌陷过程的已知影响。在这项工作中,我们为控制膜塌陷的两个关键机制提供了视觉证据:界面不稳定性以及在多个非末端液固接触时蒸气的成核作用。通过对浸没在液态水中的加热球体上的膜塌陷进行高速X射线成像,可以获得这些结果。 X射线图像与第二个高速可见光照相机和两个热电偶同步,以深入了解薄膜形成和薄膜塌陷过程。最后,通过分析X射线图像定量动态膜厚度。这有助于评估表面粗糙度对薄膜破坏的影响。这项工作的结果鼓励进一步研究非线性稳定性理论,以巩固膜塌陷过程中液-气界面上表面的作用。

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