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EXPERIMENTAL STUDY ON PARTICLE BEHAVIOUR IN SIMULATED GAS-OIL-SAND MULTIPHASE PRODUCTION AND TRANSFER OPERATIONS

机译:模拟气-油-砂多相生产和转移作业中颗粒行为的实验研究

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摘要

A crucial point still to be established in the prediction of oil-gas-sand multiphase production and transfer system performance is the identification of relevant mechanisms describing sand particle transport. To resolve this issue, experimental investigations are made on the behaviour of suspended sand particles in simulated oil-gas-sand multiphase pipe flows paying attention to the time-averaged local and global sand velocity and holdup. Simultaneous measurements of the time-averaged local and global sand velocity are made by digital imaging technique for better understanding of the oil-gas-sand multiphase flow hydrodynamics and sand transport mechanisms. The results show flow regimes of the multiphase flows significantly influence sand transport in the pipeflow. The shape of the local and global sand particle velocity and holdup profiles are also strongly modified by flow regimes. Furthermore, the experimental results indicate that the transport effect of the suspended sand particle can be enhanced by operating the multiphase flows under slug flow conditions. It is concluded that a new mechanism based on bubble-particle interaction needs to be considered in the modelling of sand transport behaviour during oil-gas-sand multiphase production and transfer operations.
机译:预测油气砂多相生产和传输系统性能的关键点仍是确定描述砂粒运移的相关机理。为了解决这个问题,对模拟的油气砂多相管流中的悬浮砂颗粒行为进行了实验研究,同时注意了时间平均的局部和全局砂速和滞留率。通过数字成像技术对时间平均的局部和全局砂速进行了同时测量,以更好地了解油气砂多相流的水动力和砂的传输机理。结果表明,多相流的流态会显着影响管道中的砂运。流动状态也强烈地改变了局部和整体的沙粒速度和持留曲线的形状。此外,实验结果表明,通过在团状流条件下操作多相流,可以增强悬浮砂粒的传输效果。得出的结论是,在油气砂多相生产和转移作业过程中,在运沙行为建模中需要考虑一种基于气泡-颗粒相互作用的新机理。

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