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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Flow pattern classification in water-air vertical flows using a single ultrasonic transducer
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Flow pattern classification in water-air vertical flows using a single ultrasonic transducer

机译:使用单个超声换能器的水垂直流动流动模式分类

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摘要

Researchers around the world have proposed different methodologies for flow-pattern identification in multi-phase flows. The most common explored techniques are based on optical imaging, pressure fluctuation, electrical impedance, radiation absorption, and ultrasound. Because the ultrasonic technique is relatively low in cost, easy to conduct, accurate, nonintrusive, and suitable for opaque systems, this paper presents a flow-pattern classifier based on ultrasound for two-phase vertical water-air flows. It is based on the coefficient of variation of the energy of the pulses reflected by the dispersed phase. Also, it uses just one ultrasonic transducer. An experimental plant was built to develop two-phase water-air flows to evaluate the proposed technique performance by comparing it to the visual analysis of the recorded image of the flow. A total of 102 different experimental points were collected and evaluated. The results have shown that the method was capable to distinguish dispersed bubbles, slug and churn flow patterns.
机译:世界各地的研究人员已经提出了不同阶段流动模式识别的不同方法。最常见的探索技术基于光学成像,压力波动,电阻,辐射吸收和超声波。由于超声波技术成本相对较低,因此易于进行,准确,非侵蚀,适用于不透明系统,本文介绍了一种基于超声波的流动图案分类器,用于两相垂直水空气流动。它基于由分散相反射的脉冲的能量的变化系数。此外,它仅使用一个超声换能器。建立了一种实验厂以开发两相水空气流动,以通过将其与流动的记录图像的视觉分析进行比较来评估所提出的技术性能。收集并评估总共102个不同的实验点。结果表明,该方法能够区分分散的气泡,块和流失流动图案。

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