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A new openhole multistage hydraulic fracturing system and the ball plug motion in a horizontal pipe

机译:一种新的露出透露型液压压裂系统和水平管中的球插头运动

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Gas well stimulation based on a ball-drop fracturing system is a widely adopted operation in the oil & gas industry. The flow resistance of a multistage fracturing pipe string increases as the number of stages grows, which is a major problem for the traditional graduated ball-drop multistage fracturing system, as it can increase the load of the pump and may ultimately result in a high-cost operation. A new openhole multistage hydraulic fracturing system, which has unlimited multistages, activated by ball plugs is proposed to improve the operation efficiency. In this system, all the downhole sliding sleeves are a single size, and a group of ball plugs activate them to achieve full-inner-diameter pipe access. As a key part of the fracturing system, the approximate cylinder-shaped ball plugs would suffer from a larger resistive force in the horizontal pipe than that of the sphere-shaped fracturing ball. Therefore, a simplified miniature indoor experiment setup is built to investigate the motion of the ball plug. The physical dimensions of the cylinder models and the velocities of the pumping flow vary in the experiment. In addition, the motion in the cylinder models are observed with a high-speed camera. Finally, the experimental data are analysed by a combination of dimensional analysis and the empirical equation method, and the results can help to determine the pumping rate during operations.
机译:基于圆珠压裂系统的气井刺激是石油和天然气工业中广泛采用的运作。多级压裂管串的流动阻力随着阶段的增加而增加,这是传统渐变圆珠多级压裂系统的主要问题,因为它可以增加泵的负荷,并且最终可能导致高度 - 成本运行。提出了一种新的透露冈多级液压压裂系统,具有由球形插头激活的无限制的多级,以提高运行效率。在该系统中,所有井下滑动套管都是单一尺寸,一组球插头激活它们以实现全内直径的管道接入。作为压裂系统的关键部分,近似圆柱形的球塞将在水平管中遭受比球形压裂球的更大电阻力。因此,建立了简化的微型室内实验设置以研究滚珠塞的运动。汽缸模型的物理尺寸和泵送流程的速度在实验中变化。另外,用高速相机观察气缸型号的运动。最后,通过尺寸分析和经验方程方法的组合分析实验数据,结果可以有助于在操作期间确定泵送速率。

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