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光纤双探针法测量液液两相流液滴直径

Measurement of Drop Size in Liquid-Liquid Two-Phase Flow by Dual Optical Probe Technology
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摘要 作为设计脉冲筛板柱的重要水力学特性参数,分散相液滴尺寸和液滴速率有重要的研究价值。使用内径为38mm的标准脉冲筛板柱,以水为连续相,纯煤油为分散相,利用光纤双探针法测量分散相表观流速、连续相表观流速和脉冲强度等因素对分散相液滴尺寸的影响。结果表明,光纤两相流参数测量系统能够很好地识别液液两相中的不同相,验证了光纤探针法应用于液液两相流的可行性。 For the important hydraulic parameters to design pulsed sieve drop size and drop velocity have important research value. The experiment a 38 mm inner diameter standard pulse sieve column. The study based on was set as the continuous phase, while the pure kerosene as the dispersed on with a dual optical probe technology to explore the influence of opera disperse on dispe d phase superficial velocity, continuous phase rsed drop size. In the experiment, a measure column, dispersed was carried out in two-phase : water phase. They went tion data, such as superficial velocity and pulse intensity ment system for two-phase flow could recognize water and kerosene well in the liquid-liquid two-phase flow. Experimental results prove the feasibility of the application of optical probe technology to the liquid-liquid two- phase flow.
出处 《核化学与放射化学》 CAS CSCD 北大核心 2014年第B12期85-89,共5页 Journal of Nuclear and Radiochemistry
关键词 脉冲筛板萃取柱 光纤探针 液滴尺寸 pulsed sieve-plate extraction column optical probe drop size
作者简介 刘富贵(1989-),男,湖南衡阳人,硕士研究生,核燃料循环与材料专业 通信联系人:矫彩山(1963-),男,黑龙江哈尔滨人,教授,核燃料循环与材料专业,E-mail:jiaocaishan@163.com
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