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深层钻井中气滞塞防气窜技术研究

Research on gas stagnation plug technology for gas migration control in deep drilling

  • 摘要: 针对深层钻井中低压低渗地层易发生气体窜流的问题,探讨气滞塞技术对气体上窜行为的控制机理与应用效果。基于ANSYS Fluent软件,建立井筒三维VOF(volume of fluid)多相流模型,模拟气体在气滞塞与常规钻井液中的上窜过程,并开展气体最大上窜速度的敏感性分析,结合现场数据设计气滞塞应用方案。研究表明,气滞塞能够显著降低气体上窜速度,其中黏度为90 mPa·s以上时,减速效果趋于稳定,最大上窜速度较常规钻井液下降幅度超过50%。气滞塞体系可有效延缓气体窜流时间,提升深井复杂地层的井控安全性,研究结果对现场防气窜措施的优化与推广具有指导意义。

     

    Abstract: Aiming at the problem that gas migration is prone to occur in low-pressure and low-permeability formations in deep drilling, the control mechanism and application effect of gas stagnation plug technology on gas upward migration behavior are discussed. Based on ANSYS Fluent software, a three-dimensional VOF (volume of fluid) multiphase flow model of the wellbore was established to simulate the upward movement process of gas in the gas stagnation plug and conventional drilling fluid. The sensitivity analysis of the maximum upward movement velocity of gas was carried out, and the application scheme of the gas stagnation plug was designed in combination with the field data. Research shows that gas stagnation plugs can significantly reduce the upward movement velocity of gas. When the viscosity is above 90 mPa·s, the deceleration effect tends to stabilize, and the maximum upward movement velocity decreases by more than 50% compared with conventional drilling fluids. The gas stagnation plug fluid system can effectively delay the time of gas channeling and enhance the well control safety of deep wells in complex strata. The research results have guiding significance for the optimization and promotion of on-site gas channeling prevention measures.

     

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