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Understanding root cause of stick-slip vibrations in deep drilling with drag bits

机译:用钻头了解深钻中粘滑振动的根本原因

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摘要

In search for the root cause of stick-slip, a mode of torsional vibrations of a drilling assembly, a linear stability analysis of coupled axial-torsional vibrations has been carried out. It has been shown that in a rotary drilling system with axial and torsional degree of freedom two distinct modes of self-excited vibrations are present: axial and torsional. These axial (torsional) modes of vibrations are due to resonance between the cutting forces acting at the bit and the axial (torsional) natural modes of drillstring vibrations. It has been demonstrated that although axial and torsional modes of vibrations do affect each other the underlying mechanisms driving these modes of vibrations are completely different. In particular, the only driving mechanism of the axial vibrations is the regenerative effect, while there are two distinct mechanisms that drive the torsional vibrations: (ⅰ) the cutting action of the bit, and (ⅱ) the wearflat/rock interaction. Moreover, in the case of the torsional vibrations the regenerative effect plays only a secondary role. The results of the present study indicate that the axial compliance can play a stabilizing role. In particular, the stabilizing role of the axial compliance increases as the ratio of the torsional to the axial natural frequency of the drillstring vibrations decreases.
机译:为了寻找粘滑的根本原因,即钻具组合的扭转振动的一种方式,已经进行了耦合轴向扭转振动的线性稳定性分析。已经证明,在具有轴向和扭转自由度的旋转钻井系统中,存在两种不同的自激振动模式:轴向和扭转。这些轴向(扭转)振动模式是由于作用在钻头上的切削力与钻柱振动的轴向(扭转)自然模式之间的共振引起的。已经证明,尽管轴向和扭转振动模式确实相互影响,但驱动这些振动模式的基本机制却完全不同。特别地,轴向振动的唯一驱动机制是再生效应,而驱动扭转振动的机制有两种:(ⅰ)钻头的切削作用,以及(ⅱ)磨损面/岩石相互作用。此外,在扭转振动的情况下,再生作用仅起次要作用。本研究的结果表明轴向柔度可以起到稳定作用。特别地,随着钻柱振动的扭转与轴向固有频率之比减小,轴向顺应性的稳定作用增加。

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