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Observation of electrohydrodynamically atomized dielectric liquids by real-time and high speed infra-red thermal images

机译:通过实时和高速红外热像观察电流体动力学雾化的介电液体

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Electrohydrodynamic (EHD) atomization or EHD spraying has been used in many industrial applications and more recently for spraying heated dielectric fluids. In this work, an experimental investigation has been conducted using high speed infrared thermal imaging techniques to measure transient temperature distributions of droplets and liquid columns in EHD spraying. The system used is capable of measuring 100 /spl mu/m particles with transient of 0.1 ms. The experiment was initially conducted in a small drop tower using single heated black ink droplet particles of known size to establish limitations of measuring technique. The technique was then applied to EHD atomization of mineral oil and decane. The results show that the present technique is capable of measuring the dynamics of liquid droplets with a spatial resolution of 200 /spl mu/m and temperature profiles with 0.1 K accuracy. The effect of applied voltage and liquid flow rates on the maximum surface droplet temperature are discussed in details.
机译:电流体动力学(EHD)雾化或EHD喷涂已在许多工业应用中使用,最近已用于喷涂加热的介电液。在这项工作中,已经使用高速红外热成像技术进行了实验研究,以测量EHD喷涂中液滴和液柱的瞬态温度分布。所使用的系统能够以0.1 ms的瞬变测量100个/ splμm/ m的颗粒。实验最初是在一个小滴塔中进行的,使用已知大小的单个加热的黑色墨滴颗粒来确定测量技术的局限性。然后将该技术应用于矿物油和癸烷的EHD雾化。结果表明,本技术能够以200 / spl mu / m的空间分辨率测量液滴的动力学,并以0.1 K的精度测量温度分布。详细讨论了施加的电压和液体流速对最大表面液滴温度的影响。

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