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The use of infrared self-emission measurements to retrieve surface temperature of levitating water droplets

机译:使用红外自发光测量来获取悬浮液滴的表面温度

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Levitating small water droplets formed from the upward flow of steam and entrained air above the heated water surface are studied. The case of relatively large droplets in the middle of a droplet cluster which is practically immobile at a small distance from the water surface is considered. The close-up infrared measurements in the spectral absorption band of water are used to identify temperature of the upper surface of the droplet. Both the directional spectral emittance of water surface and the spectral sensitivity of the device are taken into account to formulate an inverse problem for the integral equation. The numerical solution of this problem showed that temperature is minimal at the top of droplet and increases sharply towards the droplet equator. This temperature difference increases almost linearly with the droplet size. The results obtained are expected to be useful for more detailed physical analysis and possible modeling of complex behavior of the levitating droplet clusters. (C) 2015 Elsevier B.V. All rights reserved.
机译:研究了由蒸汽和夹带空气在热水表面上方向上流动形成的悬浮小水滴。考虑在液滴簇的中部相对较大的液滴的情况,该液滴实际上在距水表面很小的距离处不动。水的光谱吸收带中的近红外测量值用于识别液滴上表面的温度。同时考虑了水表面的定向光谱发射率和设备的光谱灵敏度,从而为积分方程制定了一个反问题。该问题的数值解表明,温度在液滴的顶部最小,并朝液滴赤道急剧上升。该温度差几乎与液滴大小成线性关系。预期获得的结果可用于更详细的物理分析和悬浮液滴簇的复杂行为的可能建模。 (C)2015 Elsevier B.V.保留所有权利。

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