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EFFECT OF SAND DISTRIBUTION ON EROSION IN ANNULAR THREE-PHASE FLOW

机译:砂分布对环三相流动侵蚀的影响

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Erosion in multiphase flow with entrained solid particles is a complex phenomenon due to existence of different flow patterns. Erosion experiments were conducted on an elbow specimen in a one-inch multiphase flow loop with gas, liquid and sand. Two different elbow specimens were used in the experiments. One placed downstream of a horizontal test section and one downstream of a vertical test section. Erosion tests were conducted at different gas and liquid velocities that showed a difference in erosion rates between the horizontal and vertical specimens. In order to better understand erosion results, the distribution of solid particles within the horizontal and vertical pipes just upstream of the elbows was measured across the pipe with a pilot probe. The results indicate that the distribution of sand in the pipe cross-section plays an important role in the erosion process due to the differences in velocities of the sand particles moving in the gas core and in the liquid film of the annular flow. It is observed that sand distribution in the horizontal test section is different than the sand distribution in the vertical test section for the same gas and liquid velocities. Therefore, the distribution of sand particles affects erosion test results. Based on these observations, a new mechanistic model has been developed to predict erosion in annular flow considering the effects of sand particle distribution and particle velocities in the annular film and gas core region. The experimental erosion results compare well with the model predictions.
机译:由于存在不同的流动模式,具有夹带固体颗粒的多相流动的侵蚀是一种复杂的现象。用气体,液体和沙子在一英寸多相流动环中的肘部样本上进行腐蚀实验。实验中使用了两种不同的肘部标本。一个放置在水平测试部分的下游和垂直试验部分下游的下游。在不同的气体和液体速度下进行侵蚀测试,其显示水平和垂直标本之间的腐蚀速率差异。为了更好地了解侵蚀结果,通过导频探针在管道上测量肘部上游的水平和垂直管内的固体颗粒的分布。结果表明,由于砂颗粒在气体芯中移动的速度和环形流动的液体膜中,管道横截面中的砂中的砂分布在侵蚀过程中起着重要作用。观察到,水平试验部分中的砂分布与相同气体和液体速度的垂直试验部分中的砂分布不同。因此,砂颗粒的分布会影响侵蚀测试结果。基于这些观察结果,已经开发了一种新的机制模型,以预测环形流动的侵蚀,考虑到环形膜和气体区域中的砂颗粒分布和颗粒速度的影响。实验侵蚀结果与模型预测相比很好。

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