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Experimental research of radiative heat transfer in a water film

机译:水膜辐射热传递的实验研究

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摘要

The paper presents results of experimental research into the transmission of infrared radiation through water film. Experiments substantiate a hypothesis about the considerable role of radiative heat transfer when heating heterogeneous water drops containing opaque solid particles in high-temperature gases. We measure the temperatures of water film surface, the bottom of a cylindrical plastic cuvette and a graphite substrate. During the experiments, the typical thickness of the water film, the bottom of the plastic cuvette and the graphite substrate is 1 mm. The temperature measurements are implemented for carbonated, distilled and tap water. Results of a comparative analysis of these measurements are presented as well. The hypothesis is formulated about a significant variation in the optical properties of water under temperature fluctuations. This assumption is based on the hydrophobic properties of amphiphilic molecules. Importantly, the experimental data enable the study of rapid evaporation of a liquid at internal and external interfaces of water drops containing solid opaque particles with a further explosive fragmentation of water film. This mechanism relies on heating of the particle surface above the boiling point of water.
机译:本文介绍了通过水膜传输红外辐射的实验研究结果。实验证实了一种假设,即在加热高温气体中包含不透明固体颗粒的异质水滴时,辐射传热的重要作用。我们测量水膜表面,圆柱形塑料比色皿的底部和石墨基底的温度。在实验过程中,水膜,塑料比色皿底部和石墨基底的典型厚度为1毫米。温度测量适用于碳酸水,蒸馏水和自来水。还提供了这些测量的比较分析结果。假设是关于温度波动下水的光学特性发生重大变化的假设。该假设基于两亲分子的疏水特性。重要的是,实验数据使得能够研究在包含固体不透明颗粒的水滴的内部和外部界面处液体的快速蒸发,并进一步爆炸了水膜。该机制依赖于将颗粒表面加热至高于水的沸点。

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