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Expanding the temperature range for generation of droplet clusters over the locally heated water surface

机译:扩大温度范围以在局部加热的水面上产生液滴簇

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A wide range of possible temperatures of levitating water droplets is interesting for the upcoming laboratory studies of biochemical processes in the droplets. The previously obtained temperature of droplets levitating above the locally heated water of room temperature appeared to be too high for some important biochemical experiments. At the same time, it was not obvious that one can generate much colder droplets. Fortunately, this problem is solved experimentally in the present study with the use of a strong cooling water layer and ambient air. The modified experimental configuration which includes a separate volume of cold air just above the central part of water layer is designed to work at quite different temperature conditions. It is shown that even moderate local heating of water surface is the most important factor to produce sufficiently large self-assembled levitating clusters of water droplets which are similar to those observed at normal temperature conditions. The effect of ambient temperature on both the generation process and characteristics of droplet clusters is studied in the paper.
机译:对于即将进行的液滴中生化过程的实验室研究而言,悬浮液滴的各种可能的温度范围很有趣。对于一些重要的生化实验,先前获得的悬浮在室温的局部加热水之上的液滴温度似乎太高。同时,还不明显会产生更冷的液滴。幸运的是,在本研究中,通过使用强大的冷却水层和环境空气,可以通过实验解决此问题。修改后的实验配置在水层中心部分正上方包含一个单独的冷空气,旨在在完全不同的温度条件下工作。结果表明,即使温和的局部加热水面,也是产生足够大的自组装悬浮水滴的最重要因素,类似于常温条件下观察到的那些。研究了环境温度对液滴团簇的产生过程和特性的影响。

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