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Study of dynamics of thin liquid layer breakdown under conditions of spot heating and formation of a droplet cluster

机译:液体加热条件下薄液层击穿动力学研究及液滴簇的形成研究

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Breakdown dynamics was studied experimentally for the horizontal layers of various liquids (ethanol, water) with the thickness of 300 μm under the conditions of spot heating from the substrate. The main stages of the process of liquid layer breakdown were determined, and time of dry spot formation was measured. Time of dry spot formation for ethanol at the heat flux of 12.6 W/cm~2 was 7.85 s, and for water at the heat flux of 117 W/cm~2, it was 0.13 s. It was found that for both working liquids, a residual layer appears in the region of spot heating before liquid layer breakdown. It is shown that together with the thermocapillary effect, evaporation is one of the main factors affecting dynamics of liquid layer breakdown and dry spot formation.
机译:在从基板的点热量的条件下,通过实验对各种液体(乙醇,水)的水平层进行分类动力学进行研究,该厚度为300μm。 测定液体层击穿过程的主要阶段,并测量干燥点形成的时间。 在12.6W / cm〜2的热通量下乙醇的干燥点形成的时间为7.85秒,热通量为117w / cm〜2的热量,为0.13 s。 发现对于工作液体,残留层出现在液体层击穿之前的点热量区域中。 结果表明,与热量效应一起,蒸发是影响液体层击穿和干燥点形成动态的主要因素之一。

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