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CONSIDERATIONS ON NUMERICAL PROCEDURE FOR STICK-SLIP ANALYSIS OF DRILL STRING

机译:钻杆竖滑分析数值过程的考虑

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Stick-slip is one of the typical phenomenon which is observed in offshore drilling and considered as a critical problem for the drilling operation. The stick-slip makes a large fluctuation of drill bit rotation, even though the top of the drill pipe is rotating at a steady velocity and sometimes causes the damage of the drill bit. Additionally, it leads a crushing of the sediment layer which is a big problem especially for the scientific drilling [1][2][3]. The main purpose of the scientific drilling is to correct high quality core samples of sediment layers under the seabed. However, once the stick-slip occurs, it makes difficult to recover a high-quality sediment layer core sample. Therefore, it is necessary to detect the occurrence of stick-slip and its fundamental characteristics such as oscillation periods and amplitudes by simulation with the aid of surface drilling data, which can be monitored during the drilling operation to mitigate or prevent stick-slip. It would be advantageous to identify the characteristics of the stick-slip from the surface drilling data. The past study [4][5][6] investigated a numerical method to analyze the stick-slip by solving the NDDE (Neutral Delay Differential Equation) which is derived from torsional vibration equation. A small-scale model experiment was conducted in a water tank to observe the stick-slip phenomenon, and the result from the analytical model is evaluated with that obtained from the experiments. In this study, the numerical model is applied for the stick-slip analysis not only of the drill pipe model but also the actual drill pipe in operation. The solutions of the NDDE is depend on not the initial value but the initial history of the solution, because NDDE contains a delayed function term. Especially, the initial history settings have much effect on the numerical solution of NDDE in case of the actual drill pipe. Additionally, to solve the NDDE for stick-slip analysis, we must set some model parameters concerned with the frictional torque on drill bit. The present study investigated the effects of the initial history and the model parameters settings on numerical solutions in detail and presented an procedure to determine the appropriate settings of the initial history and the model parameters by reference to the measured top drive torque.
机译:粘滑是在海上钻井中观察到的典型现象之一,被认为是钻井作业的关键问题。即使钻杆的顶部以稳定的速度旋转,粘滑也会使钻头旋转产生很大的波动,并且有时会损坏钻头。另外,它导致沉积层的破碎,这是一个很大的问题,特别是对于科学钻探[1] [2] [3]。科学钻探的主要目的是校正海底下沉积层的高质量岩心样本。但是,一旦发生粘滑现象,就很难回收高质量的沉积层岩心样品。因此,有必要通过借助地面钻孔数据进行模拟来检测粘滑的发生及其基本特征(例如振荡周期和振幅),可以在钻井操作期间对其进行监视以减轻或防止粘滑。从表面钻探数据中识别出粘滑的特征将是有利的。过去的研究[4] [5] [6]研究了一种数值方法,通过求解从扭转振动方程导出的NDDE(中性延迟微分方程)来分析粘滑。在水箱中进行了小规模的模型实验,以观察粘滑现象,并用实验获得的结果对分析模型的结果进行评估。在这项研究中,数值模型不仅适用于钻杆模型的粘滑分析,而且适用于实际运行中的钻杆。 NDDE的解不取决于初始值,而是取决于解的初始历史记录,因为NDDE包含延迟函数项。特别是在实际钻杆的情况下,初始历史记录设置对NDDE的数值解有很大影响。此外,要解决用于粘滑分析的NDDE,我们必须设置一些与钻头上的摩擦扭矩有关的模型参数。本研究详细研究了初始历史记录和模型参数设置对数值解的影响,并提出了一种程序,通过参考测得的顶部驱动扭矩来确定初始历史记录和模型参数的适当设置。

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