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A New Method for Predicting the Position of Gas Influx Based on PRP in Drilling Operations

机译:基于PRP的钻井作业瓦斯涌入位置预测新方法

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Accurately predicting the position of gas influx not only helps to analyze complex formation structure, but also can provide reference for taking effective measure, such as increasing mud density, increasing back pressure and casing packer, to suppress the gas influx. Predicting the accurate position of gas influx has been one of the urgent difficulties for drilling industry. With full consideration of the important factors such as the virtual mass force, viscous shear force, energy exchange, and narrow resistance, a new method for predicting the position of gas influx has been proposed based on pressure response time calculation. The gas equations of state (EOS), small perturbation theory, and the fourth-order Runge-Kutta method (R-K4) are adopted to solve the model. Also, the pressure response time plate (PRP) which presents the corresponding relationship between position of gas influx and wellhead parameters by several pressure wave response curves calculated by computer programming is given. The results showed that the PRP is unique at different well depth and gas influx rate, and the position of gas influx can be accurately determined by PRP with known wellhead parameters and detected response time. Therefore, without the help of downhole tools, the accurate mathematical method for predicting the position of gas influx is completely feasible.
机译:准确预测瓦斯涌入的位置,不仅有助于分析复杂的地层结构,而且可以为采取有效的措施,例如提高泥浆密度,增加背压和封隔器,以抑制瓦斯涌入提供参考。预测瓦斯涌入的准确位置一直是钻井行业的迫切困难之一。在充分考虑虚拟质量力,粘性剪切力,能量交换和窄阻力等重要因素的基础上,提出了一种基于压力响应时间计算的瓦斯涌入位置预测新方法。采用气体状态方程(EOS),小扰动理论和四阶Runge-Kutta方法(R-K4)求解模型。另外,给出了压力响应时间板(PRP),该压力响应时间板通过计算机编程计算出的多个压力波响应曲线给出了气体流入位置和井口参数之间的对应关系。结果表明,PRP在不同的井深和不同的瓦斯涌入速率下是唯一的,并且可以通过已知的井口参数和检测到的响应时间,通过PRP准确确定瓦斯涌入的位置。因此,在没有井下工具帮助的情况下,用于预测瓦斯涌入位置的精确数学方法是完全可行的。

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