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Effect of pipe orientation on dense-phase transport in inclined upward and downward flows

机译:管道取向对向上和向下倾斜流中密相传输的影响

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摘要

A physical model is presented to describe the flow characteristics of cocurrent two-layer upflow and downflow through inclined tubes. The influence of inclination angle on these two kinds of flow patterns has been investigated. For inclined upflow, the solids/gas velocity ratio is less than unity and decreases slightly with the increase of inclination angle, whereas for inclined downflow, this velocity ratio is, in general, greater than unity and increases with the inclination angle. The average voidage increases as the inclination angle decreases for inclined upflow while an opposite trend exists for inclined downflow. The pressure gradient is invariably negative for inclined upflow at various inclination angles and for inclined downflow of low inclination; however, the gradient becomes positive for inclined downflow at higher inclination angles. A flow regime map has also been presented. The present predictions agree well with the existing published experimental results.
机译:提出了一个物理模型来描述并流两层向上和向下流动通过倾斜管的流动特性。研究了倾斜角对这两种流型的影响。对于倾斜的上流,固/气速度比小于1,并且随着倾角的增加而略微减小,而对于倾斜的下流,该速度比通常大于1,并且随倾角的增加。对于倾斜的上流,平均空隙度随着倾斜角的减小而增加,而对于倾斜的下流则存在相反的趋势。对于在各种倾角下的倾斜上升流和对于低倾角的倾斜下降流,压力梯度始终为负。但是,对于较大的倾斜角,向下倾斜的坡度将变为正值。还显示了流态图。目前的预测与现有已发表的实验结果非常吻合。

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