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THERMAL PATTERNS AND INTERNAL FLOW MECHANISMS IN EVAPORATING INVERTED SESSILE DROPS OF PURE WATER

机译:蒸发纯净无水小滴蒸发过程中的热模式和内部流动机理

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We report an experimental investigation on contact line dynamics, thermal patterns, and internal fluid flow during the evaporation of inverted sessile drops of pure water. This configuration of sessile drop when placed on a heated substrate should lead to thermal stratification and any internal convective flow will be governed by surface tension driven Marangoni flow. First, we report contact line dynamics and thermal patterns recorded using an optical camera and infrared camera, respectively. An interesting outcome from the present study is the resemblance observed between the evolution of contact angle and interfacial temperature difference during evaporation. By performing Particle Image Velocimetry to delineate the internal flow characteristics, we report an axisymmetric counter-rotating flow inside the drop. This flow is directed towards the substrate from the apex at the centerline of the drop. In literature, a similar directional flow is reported to be due to Marangoni flow albeit for a normal sessile drop. Further, by extracting the magnitude of velocity, we report a maximum velocity in the flow occurring at the center of drop which in turn increases with substrate temperature. The results reported in the present study shed light on the presence of Marangoni flow in pure water drops whose understanding is of paramount importance in many academic and industrial applications.
机译:我们报告了对纯水的倒置无柄液滴蒸发过程中的接触线动力学,热模式和内部流体流动的实验研究。当放置在加热的基底上时,无柄滴的这种构型应导致热分层,并且任何内部对流将由表面张力驱动的马兰戈尼流控制。首先,我们报告分别使用光学相机和红外相机记录的接触线动力学和热模式。本研究的一个有趣的结果是在蒸发过程中观察到了接触角的演变与界面温差之间的相似性。通过执行粒子图像测速来描绘内部流动特性,我们报告了液滴内部的轴对称反向旋转流动。该流从液滴中心线的顶点被引导到基底。在文献中,据报道类似的定向流动是由于Marangoni流动引起的,尽管对于正常的无柄降落也是如此。此外,通过提取速度的大小,我们报告了在液滴中心出现的流中的最大速度,该速度随基材温度的升高而增加。本研究报告的结果阐明了纯水滴中Marangoni流动的存在,其理解在许多学术和工业应用中至关重要。

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