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Experimental Study of Low Concentration Sand Transport in Multiphase Air-Water Horizontal Pipelines

机译:多相水-气水平管道中低浓度砂运移实验研究

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The ultimate goal of this work is to determine the minimum flow rates necessary for effective transport of sand in a pipeline carrying multiphase flow. In order to achieve this goal, an experimental study is performed in a horizontal pipeline using water and air as carrier fluids. In this study, successful transport of sand is defined as the minimum flow rates of water and air at which all sand grains continue to move along in the pipe. The obtained data cover a wide range of liquid and gas flow rates including stratified and intermittent flow regimes. The effect of physical parameters such as sand size, sand shape, and sand concentration is experimentally investigated in 0.05 and 0.1 m internal diameter pipes. The comparisons of the obtained data with previous studies show good agreement. It is concluded that the minimum flow rates required to continuously move the sand increases with increasing sand size in the range examined and particle shape does not significantly affect sand transport. Additionally, the data show the minimum required flow rates increase by increasing sand concentration for the low concentrations considered, and this effect should be taken into account in the modeling of multiphase sand transport.
机译:这项工作的最终目标是确定在多相流管道中有效运输沙子所需的最小流速。为了实现该目标,在水平管道中使用水和空气作为载液进行了实验研究。在这项研究中,成功​​输送沙粒的定义是所有沙粒继续沿管道移动的最小水和空气流速。所获得的数据涵盖了范围广泛的液体和气体流速,包括分层和间歇流动形式。在内径为0.05和0.1 m的管道中,通过实验研究了诸如砂尺寸,砂形状和砂浓度等物理参数的影响。将获得的数据与以前的研究进行比较表明吻合良好。结论是,在检查范围内,随着砂粒尺寸的增加,连续移动砂粒所需的最小流速会增加,并且颗粒形状不会显着影响砂粒的运输。此外,数据显示,对于所考虑的低浓度,通过增加砂子浓度,所需的最小流速增加,并且在多相砂子运输模型中应考虑到这种影响。

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