Bubble velocity, diameter, and void fraction measurements in a multiphase flow using fiber optic reflectometer

气泡 光学 材料科学 局部空洞 多孔性 光纤 机械 Chord(对等) 两相流 物理 流量(数学) 复合材料 计算机科学 分布式计算
作者
Ho‐Joon Lim,Kuang‐An Chang,C. B. Su,Chi-Yueh Chen
出处
期刊:Review of Scientific Instruments [American Institute of Physics]
卷期号:79 (12) 被引量:40
标识
DOI:10.1063/1.3053271
摘要

A fiber optic reflectometer (FOR) technique featuring a single fiber probe is investigated for its feasibility of measuring the bubble velocity, diameter, and void fraction in a multiphase flow. The method is based on the interference of the scattered signal from the bubble surface with the Fresnel reflection signal from the tip of the optical fiber. Void fraction is obtained with a high accuracy if an appropriate correction is applied to compensate the underestimated measurement value. Velocity information is accurately obtained from the reflected signals before the fiber tip touches the bubble surface so that several factors affecting the traditional dual-tip probes such as blinding, crawling, and drifting effects due to the interaction between the probe and bubbles can be prevented. The coherent signals reflected from both the front and rear ends of a bubble can provide velocity information. Deceleration of rising bubbles and particles due to the presence of the fiber probe is observed when they are very close to the fiber tip. With the residence time obtained, the bubble chord length can be determined by analyzing the coherent signal for velocity determination before the deceleration starts. The bubble diameters are directly obtained from analyzing the signals of the bubbles that contain velocity information. The chord lengths of these bubbles measured by FOR represent the bubble diameters when the bubble shape is spherical or represent the minor axes when the bubble shape is ellipsoidal. The velocity and size of bubbles obtained from the FOR measurements are compared with those obtained simultaneously using a high speed camera.
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