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Dynamic reliability analysis of drill string system in deep ultra-deep well based on the first excursion failure criterion

机译:基于第一次偏移故障标准的深度和超深井钻弦系统动态可靠性分析

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The first excursion failure criterion was introduced to calculate the dynamic reliability of drill string elements. Considering the random of geometry size and mechanical property parameters of drill string in deep & ultra-deep wells, the drill string system was dispersed into several basic elements according to the structure, strength and differences in the nature of formation rock in the well depth direction. And the overall dynamic reliability was quantitatively calculated through the serial theory. Through an example, the results show that the dynamic reliability of the drill string elements appeared fluctuation near the depth of 4500 meters for the inside worn of the drill string and casing, and uneven loading of drill string. The dynamic reliability of drill string in deep and complicated formation was less than any other drill strings. The drilling pressure, rotation speed and drilling depth were the main influencing factors on the dynamic reliability of drill string.
机译:引入了第一次偏移故障标准来计算钻弦元件的动态可靠性。考虑到深度和超深井钻柱的几何尺寸和机械性能参数的随机,根据井深度方向的形成岩石性质的结构,强度和差异,将钻柱系统分散到几个基本元件中。通过串行理论定量计算总体动态可靠性。通过一个例子,结果表明,钻弦元件的动态可靠性出现在钻柱和套管内部磨损的4500米深度附近的波动,以及钻柱的不均匀装载。深层和复杂的形成中钻串的动态可靠性小于任何其他钻头串。钻孔压力,转速和钻孔深度是钻柱动态可靠性的主要影响因素。

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