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Theoretical modelling of post - buckling contact interaction of a drill string with inclined bore-hole surface

机译:倾斜孔面钻柱屈曲后接触相互作用的理论模型。

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At present, the time of easy oil and gas is over. Now, the largest part of fossil fuels is concentrated in the deepest levels of tectonic structures and in the sea shelves. One of the most cumbersome operations of their extraction is the bore-hole drilling. In connection with austere tectonic and climate conditions, their drivage every so often is associated with great and diversified technological difficulties causing emergencies on frequent occasions. As a rule, they are linked with drill string accidents. A key role in prediction of these situations should play methods of theoretical modelling. For this reason, there is a growing need for development and implementation of new numerical methods for computer simulation of critical and post-critical behavior of drill strings (DSs). In this paper, the processes of non-linear deforming of a DS in cylindrical cavity of a deep bore-hole are considered. On the basis of the theory of curvilinear flexible rods, non-linear constitutive differential equations are deduced. The effects of the longitudinal non-uniform preloading, action of torque and interaction between the DS and the bore-hole surface are taken into account. Owing to the use of curvilinear coordinates in the constraining cylindrical surface and a specially chosen concomitant reference frame, it became possible to separate the desired variables and to reduce the total order of the equation system. To solve it, the method of continuation the solution by parameter and the transfer matrix technique are applied. As a result of the completed numerical analysis, the critical states of the DS loading in the cylindrical channels of inclined bore-holes are found. It is shown that the modes of the post-critical deforming of the DS are associated with its irregular spiral curving prevailing in the zone of bottom-hole-assembly. The possibility of invariant state generation during post-critical deforming is established, condition of its bifurcation is formulated. It is shown that infinite variety of loads can correspond to one geometrical configuration of the DS. They differ each from other by contact force functions.
机译:目前,轻松石油和天然气的时代已经过去。现在,化石燃料的最大部分集中在最深层次的构造结构和海架中。钻孔的最繁琐操作之一是钻孔。在严峻的构造和气候条件下,它们的发展常常伴随着巨大而又多样化的技术难题,经常导致紧急情况。通常,它们与钻柱事故有关。在预测这些情况时的关键作用应该是理论建模的方法。由于这个原因,对用于计算机模拟钻柱(DSs)的临界和临界后行为的新数值方法的开发和实现的需求日益增长。本文考虑了深孔圆柱腔内DS的非线性变形过程。基于曲线柔性杆理论,推导了非线性本构微分方程。考虑了纵向不均匀预紧,扭矩作用以及DS与钻孔表面之间相互作用的影响。由于在受约束的圆柱表面上使用了曲线坐标并特别选择了相应的参考系,因此有可能分离出所需的变量并减少方程组的总阶数。为了解决这个问题,应用了通过参数连续求解的方法和传递矩阵技术。作为完成的数值分析的结果,发现了倾斜孔的圆柱形通道中的DS载荷的临界状态。结果表明,DS的临界后变形模式与在井底钻具区普遍存在的不规则螺旋弯曲有关。确定了后临界变形过程中产生不变状态的可能性,并提出了其分叉的条件。结果表明,无限多种负载可以对应于DS的一种几何构造。它们之间的接触力功能各不相同。

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