首页> 外文期刊>Journal of Chemical Engineering of Japan >MEASUREMENT OF BEHAVIOR OF GAS BUBBLES AND GAS HOLDUP IN A SLURRY BUBBLE COLUMN BY A DUAL ELECTRORESISTIVITY PROBE METHOD
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MEASUREMENT OF BEHAVIOR OF GAS BUBBLES AND GAS HOLDUP IN A SLURRY BUBBLE COLUMN BY A DUAL ELECTRORESISTIVITY PROBE METHOD

机译:用双电阻率探针法测量浆状气泡柱中的气泡和气体滞留行为

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References(23) Cited-By(40) Bubble properties such as gas holdup, bubble frequency, bubble length and bubble rising velocity in a slurry bubble column were measured by using a dual electroresistivity probe method. The radial distribution of local gas holdup, εg, was parabolic in the range, where mean solid holdup, εs, was less than 0.2. In the range of εs≥ 0.2, however, εg in the region of dimensionless radius, r/Rw, from 0.4 to 0.8 decreased considerably owing to the concentration of bubbles in the central region of the column. The value of cross-sectionally averaged gas holdup, εg, agreed fairly well with that predicted by Koide''s equation for heterogeneous flow in a slurry bubble column. The cumulative bubble length distribution, Fl followed a log-normal distribution. On the other hand, the cumulative bubble rising velocity distribution, Fv, followed a normal distribution. The superficial gas velocity, Ug, had little effect on Fl and Fv in the slurry bubble column with high solid content. When Ug was larger than about 4 cm/s, the median of Fl and that of Fv in the slurry bubble column were larger than the corresponding values in the bubble column. On the other hand, the variance of Fl in the slurry bubble column was almost the same as that in the bubble column and the variance of Fv in the slurry bubble column was smaller than that in the bubble column.
机译:参考文献(23)Cited-By(40)使用双电阻率探针法测量了浆料鼓泡塔中的气泡性质,如气体滞留率,气泡频率,气泡长度和气泡上升速度。局部气体含气量的径向分布εg在该范围内呈抛物线形,其中平均固体含气量εs小于0.2。但是,在εs≥0.2的范围内,无因次半径r / Rw从0.4到0.8范围内的εg会由于柱子中心区域中的气泡浓度而大大降低。横截面平均气体滞留率εg值与Koide方程预测的用于浆液鼓泡塔中非均相流动的值非常吻合。累积气泡长度分布F1遵循对数正态分布。另一方面,累积气泡上升速度分布Fv遵循正态分布。在固体含量高的浆料鼓泡塔中,表观气体流速Ug对Fl和Fv影响很小。当Ug大于约4cm / s时,浆料鼓泡塔中的Fl和Fv的中值大于鼓泡塔中的相应值。另一方面,浆料鼓泡塔中的Fl的变化与鼓泡塔中的Fl的变化几乎相同,并且浆料鼓泡塔中的Fv的变化小于鼓泡塔中的Fv的变化。

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