Zhao Long, Yan Yifei, Yan Xiangzhen, Zhao Lei
College of Mechanical and Electronic Engineering, China University of Petroleum, Qingdao 266580, China.
Qil & Gas CAE Technology Research Center, China University of Petroleum, Qingdao 266580, China.
Sensors (Basel). 2019 Jul 30;19(15):3343. doi: 10.3390/s19153343.
The downhole engineering parameters measurement sub is a key component of the rotary steerable drilling system. To enable a measurement sub to serve reliably under downhole complex conditions, the structural parameters optimization of its key but weak elastic cell is systematically studied. First, the multiple relations among measurement sensitivities, structural stiffnesses, and strength during structural parameters design are summarized. Second, the selection of the structural parameters of the elastic cell is characterized as a multi-objective optimization model, which is solved using the non-dominated sorting genetic algorithm II (NSGA-II). Furthermore, the finite element method (FEM) is used to verify the measurement performance and static strength of the proposed structure. Finally, transient dynamics analysis is applied to investigate the dynamic strength of the designed structure. The results show that the proposed parameters optimization strategy can quickly obtain the database for the structural parameters design of an elastic cell. The static analysis results based on the FEM further verify the effectiveness of the proposed method. Transient dynamic analysis also reveals the relative rigor of the proposed methodology framework to some extent. This work has practical significance for improving the drilling efficiency and reducing drilling risks. In addition, this proposed methodology has good extensibility.
井下工程参数测量短节是旋转导向钻井系统的关键部件。为使测量短节在井下复杂条件下可靠工作,系统研究了其关键且薄弱的弹性元件的结构参数优化。首先,总结了结构参数设计过程中测量灵敏度、结构刚度和强度之间的多重关系。其次,将弹性元件结构参数的选择表征为一个多目标优化模型,采用非支配排序遗传算法II(NSGA-II)进行求解。此外,利用有限元方法(FEM)验证了所提结构的测量性能和静态强度。最后,应用瞬态动力学分析研究了所设计结构的动态强度。结果表明,所提参数优化策略能够快速获得弹性元件结构参数设计的数据库。基于有限元方法的静态分析结果进一步验证了所提方法的有效性。瞬态动力学分析在一定程度上也揭示了所提方法框架的相对严谨性。这项工作对于提高钻井效率和降低钻井风险具有实际意义。此外,所提方法具有良好的可扩展性。