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Lateral vibration analysis of pre-bent pendulum bottom hole assembly used in air drilling

机译:空气钻孔中使用的预弯曲摆底孔组件的横向振动分析

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In the air drilling process, the pre-bent pendulum bottom hole assembly (PBP-BHA) has excellent performance in controlling the well deviation and improving the wellbore quality, but the mechanism that is closely related to the dynamics of the PBP-BHA has not been ascertained. In this paper, an effective technique combining the weighted residuals method with the finite element method is presented to study the PBP-BHA lateral vibration. First, a three-dimensional nonlinear static model of pre-bent BHA is established under small deformation condition and solved by the weighted residuals method and optimization method, so as to define the tangent point according to the deformation characteristics of the PBP-BHA. This tangent point determines the end of the effective PBP-BHA length that starts from the drill bit. Subsequently, the finite element model of PBP-BHA is established to solve the lateral natural frequencies and mode shapes of the PBP-BHA. After considering the borehole wall constraint, the modal superposition technique is used to obtain the steady dynamic responses of the PBP-BHA. Meanwhile, the dynamic performance of the PBP-BHA used in the actual air drilling process is calculated to obtain its critical speeds and working status chart. The critical speeds of the PBP-BHA are 80 r/min and 190 r/min, which are far away from the surface rotary speed in the actual drilling site. Through comparing with the dynamic characteristics of regular BHA with the same structural parameters, it is discovered that the bend angle in the PBP-BHA plays a crucial role in improving the dynamic performance of the PBP-BHA. Moreover, the technique presented in this study can be used to make a reasonable design of BHA configuration and optimize drilling parameters.
机译:在空气钻井过程中,预弯曲的摆孔底孔组件(PBP-BHA)在控制井偏差和提高井筒质量方面具有优异的性能,但与PBP-BHA的动态密切相关的机制没有被确定了。本文提出了一种与有限元方法相结合的加权残留方法的有效技术,以研究PBP-BHA横向振动。首先,在小变形条件下建立预弯曲BHA的三维非线性静态模型,并通过加权残留方法和优化方法解决,从而根据PBP-BHA的变形特征来定义切线。该切片点确定从钻头开始的有效PBP-BHA长度的结束。随后,建立了PBP-BHA的有限元模型,以解决PBP-BHA的横向自然频率和模式形状。在考虑到钻孔壁约束之后,模态叠加技术用于获得PBP-BHA的稳定动态响应。同时,计算实际空气钻井过程中使用的PBP-BHA的动态性能,以获得其临界速度和工作状态图。 PBP-BHA的临界速度为80 r / min,190 r / min,远离实际钻井部位中的表面旋转速度。通过与具有相同结构参数的常规BHA的动态特性进行比较,发现PBP-BHA中的弯曲角度在提高PBP-BHA的动态性能方面发挥着至关重要的作用。此外,本研究中提供的技术可用于制造BHA配置的合理设计并优化钻孔参数。

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