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A numerical method for determining the stuck point in extended reach drilling

机译:确定大范围钻进卡死点的数值方法

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A stuck drill string results in a major non-productive cost in extended reach drilling engineering. The first step is to determine the depth at which the sticking has occurred. Methods of measurement have been proved useful for determining the stuck points, but these operations take considerable time. As a result of the limitation with the current operational practices, calculation methods are still preferred to estimate the stuck point depth. Current analytical methods do not consider friction and are only valid for vertical rather than extended reach wells. The numerical method is established to take full account of down hole friction, tool joint, upset end of drill pipe, combination drill strings and tubular materials so that it is valid to determine the stuck point in extended reach wells. The pull test, torsion test and combined test of rotation and pulling can be used to determine the stuck point. The results show that down hole friction, tool joint, upset end of drill pipe, tubular sizes and materials have significant effects on the pull length and/or the twist angle of the stuck drill string.
机译:卡住的钻柱会导致大范围钻探工程的主要非生产性成本。第一步是确定发生粘连的深度。事实证明,测量方法对于确定卡死点很有用,但是这些操作需要花费大量时间。由于当前操作实践的局限性,仍然优选使用计算方法来估计卡点深度。当前的分析方法不考虑摩擦,仅对垂直井有效,而对延伸井无效。建立数值方法时要充分考虑井下摩擦力,工具接头,钻杆up粗端,组合钻柱和管状材料,以便确定延伸井中的卡死点是有效的。拉力测试,扭转测试以及旋转和拉力的组合测试可用于确定卡死点。结果表明,井下摩擦力,工具接头,钻杆的set端,管的尺寸和材料对卡住的钻柱的拉力长度和/或扭转角有显着影响。

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