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A study of particle shape and size effects on hydrodynamic parameters of trickle beds

机译:颗粒形状和尺寸对滴流床水动力参数影响的研究

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Uniform-spherical and cylindrical-extrudate particles are employed to study air-water downflow in a packed bed of 14cm i.d. The effect of particle shape, neglected in the literature so far, is shown to be very significant. A packed bed of extrudates displays significantly greater global dynamic liquid holdup h(d) and pressure drop, as well as a trickling-to-pulsing transition boundary at higher gas flow rates, compared to beds of spheres of comparable size. Moreover, packed extrudates exhibit a significant increase of holdup, hd, in the axial flow direction, a trend reported for the first time as there are no similar data available in the literature; on the contrary beds of spherical particles are characterized by practically constant hd in the axial direction. Although an explanation for this hd axial variation is not obvious, one might attribute it to the anisotropy and non-uniformity of interstitial voids of packed cylindrical particles. For beds of uniform spheres, in the diameter range examined (3-6 mm), the effect of size on both dynamic holdup and pressure drop, although quite pronounced, is not as significant as the effect of particle shape. An extensive survey of literature data, obtained with similar spherical particles, suggests that small bed diameters have an appreciable influence on trickling-to-pulsing transition boundary. Comparisons are reported with literature methods for predicting the measured parameters; discrepancies between data and predictions may be partly due to the inadequacy of a single "equivalent" diameter to represent both shape and size of non-spherical particles; predictive methods performing best are also identified. (c) 2006 Elsevier Ltd. All rights reserved.
机译:使用均匀的球形和圆柱形挤出物颗粒研究内径为14cm的填充床中的空气-水向下流动。迄今为止在文献中所忽略的颗粒形状的影响已显示出非常重要的意义。与尺寸相当的球床相比,填充物的填充床显示出更高的整体动态液体滞留量h(d)和压降,以及在较高的气体流速下滴流-脉冲过渡边界。此外,填充的挤出物在轴向流动方向上的滞留率hd显着增加,这是首次报道的趋势,因为在文献中没有类似的数据。相反,球形颗粒床的特征在于在轴向上几乎恒定的hd。尽管对此hd轴向变化的解释并不明显,但可以将其归因于堆积的圆柱状颗粒的间隙空隙的各向异性和不均匀性。对于均匀球床,在所检查的直径范围(3-6毫米)中,尺寸对动态滞留量和压降的影响虽然非常明显,但不如颗粒形状的影响那么显着。使用相似的球形颗粒对文献数据进行的广泛调查表明,较小的床层直径对滴流至脉冲过渡边界有明显影响。用文献方法报告比较结果以预测测得的参数;数据和预测之间的差异可能部分是由于单个“等效”直径不足以代表非球形粒子的形状和大小所致;还确定了效果最佳的预测方法。 (c)2006 Elsevier Ltd.保留所有权利。

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