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Effects of Geometric Properties for a Perforated Plate on Gas Holdup in a Bubble Column

机译:多孔板几何特性对气泡塔内气体滞留量的影响

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References(10) Cited-By(3) The effects of geometric properties such as diameter, d, number, n, and pitch, p, for holes located on a perforated plate on gas holdup, φ, in a bubble column were experimentally investigated while varying gas flow rate, G, and unaerated liquid height, Z0.In the case of constant Z0, the volume of the spouting section above the column bottom increased with increasing d and decreasing n and p, and became negligible compared with that of the calming section at sufficiently large Z0. As a result, the value of φ based on the volume of the bubble bed Increased and approached that of φC based on the volume of the calming section. The value of φC was correlated to two parameters as a dimensionless expression. One was the flow parameter defined by a ratio of the reference velocities in the free and recirculated rising regions, and another was the distribution parameter for gas holdup in the recirculated rising region. Since the latter was strongly dependent on geometric properties for a perforated plate, its empirical expression was obtained as a function of the properties.
机译:参考文献(10)Cited-By(3)通过实验研究了气泡柱上气体滞留率φ时孔的直径,直径,数量,n和间距p等几何特性的影响。在不变的Z0的情况下,随着d的增加,n和p的减小,塔底上方的出水段的体积增加,与之相比可以忽略不计。足够大的Z0处的平滑部分。结果,基于气泡床的体积的φ值增加并且接近基于平静部分的体积的φC值。 φC的值与两个参数相关,作为无量纲表达式。一个是由自由和再循环上升区域中的参考速度之比定义的流量参数,另一个是用于再循环上升区域中的气体滞留量的分布参数。由于后者在很大程度上取决于多孔板的几何特性,因此获得了其经验表达式作为该特性的函数。

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