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A New Model for Predicting Dynamic Surge Pressure in Gas and Drilling Mud Two-Phase Flow during Tripping Operations

机译:跳闸运行中预测气体和钻井泥浆两相流动态喘振压力的新模型

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摘要

Investigation of surge pressure is of great significance to the circulation loss problem caused by unsteady operations in management pressure drilling (MPD) operations. With full consideration of the important factors such as wave velocity, gas influx rate, pressure, temperature, and well depth, a new surge pressure model has been proposed based on the mass conservation equations and the momentum conservation equations during MPD operations. The finite-difference method, the Newton-Raphson iterative method, and the fourth-order explicit Runge-Kutta method (R-K4) are adopted to solve the model. Calculation results indicate that the surge pressure has different values with respect to different drill pipe tripping speeds and well parameters. In general, the surge pressure tends to increase with the increases of drill pipe operating speed and with the decrease of gas influx rate and wellbore diameter. When the gas influx occurs, the surge pressure is weakened obviously. The surge pressure can cause a significant lag time if the gas influx occurs at bottomhole, and it is mainly affected by pressure wave velocity. The maximum surge pressure may occur before drill pipe reaches bottomhole, and the surge pressure is mainly affected by drill pipe operating speed and gas influx rate.
机译:喘振压力的研究对于管理压力钻井(MPD)作业中由于不稳定作业而引起的循环损失问题具有重要意义。在充分考虑波速,瓦斯涌入率,压力,温度和井深等重要因素的基础上,提出了一种基于MPD运行过程中的质量守恒方程和动量守恒方程的新的喘振压力模型。采用有限差分法,牛顿-拉夫森迭代法和四阶显式龙格-库塔法(R-K4)求解模型。计算结果表明,相对于不同的钻杆行进速度和井参数,喘振压力具有不同的值。通常,浪涌压力趋于随钻杆工作速度的增加以及瓦斯涌入速率和井眼直径的减小而增加。发生瓦斯涌入时,喘振压力明显减弱。如果瓦斯涌入井底,喘振压力会导致明显的滞后时间,并且主要受压力波速度的影响。最大浪涌压力可能在钻杆到达井底之前发生,浪涌压力主要受钻杆工作速度和气体流入速率的影响。

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  • 来源
    《Mathematical Problems in Engineering》 |2014年第1期|916798.1-916798.16|共16页
  • 作者单位

    State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu, Sichuan 610500, China;

    CNPC Key Lab for Tubular Goods Engineering, Southwest Petroleum University, Chengdu, Sichuan 610500, China;

    State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu, Sichuan 610500, China;

    CNPC Key Lab for Tubular Goods Engineering, Southwest Petroleum University, Chengdu, Sichuan 610500, China;

    Daqing Normal University and Petro China Daqing Oilfield Company, Daqing, Heilongjiang 163000, China;

    No. 1 Oil Production Plant, Petro China Daqing Oilfield Company, Daqing, Heilongjiang 163000, China;

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