...
首页> 外文期刊>Arabian Journal for Science and Engineering >Mechanical Behaviors of Bottom Hole Assembly with Bent-Housing Positive Displacement Motor Under Rotary Drilling
【24h】

Mechanical Behaviors of Bottom Hole Assembly with Bent-Housing Positive Displacement Motor Under Rotary Drilling

机译:旋转钻孔下弯曲壳体正排量电机底孔组件的机械行为

获取原文
获取原文并翻译 | 示例
           

摘要

Abundant drilling activities had confirmed that the fully rotary drilling can improve the rate of penetration effectively. However, the fully rotary drilling has brought some challenges for the trajectory control ability of the bottom hole assembly (BHA). One of the reasons is the effect of drill-string rotation was ignored in the existing methods, where the bent-housing positive displacement motor (PDM) was regarded as the prebending beam. According to the D'Alembert principle, the dynamical centrifugal force, generated by drill-string rotation, was equivalent to a quasi-static problem. The mechanical model of BHA with bent-housing PDM was established based on the Timoshenko beam theory. The calculated formula of bit side force (BSF) and resultant steering force (RSF) was deduced. The influences of inclination, rotational speed of drill-string, bend angle, eccentricity, stabilizer, weight on bit (WOB) and elbow position on the average BSF and RSF were investigated. The results show that the rotational speed of drill-string has a significant influence on the steering ability. The average BSF increases with the rotational speed of drill-string, while the RSF increases firstly and decreases subsequently. The controlling factor is the transverse component of drill-string gravity in a low rotational speed, while it is the centrifugal force in a high rotational speed. The BSF climbs up and then declines with WOB and rotational speed of drill-string. When the rotational speed of drill-string exceeds 100 RPM or WOB is higher than 80 kN, the BSF will decrease, resulting in a decline in angle buildup. The present method can be utilized to optimize the drilling parameters, BHA configuration and structure of bent-housing PDM.
机译:丰富的钻井活动证实,完全旋转钻井可以有效地提高渗透率。然而,完全旋转钻孔已经为底部孔组件(BHA)的轨迹控制能力带来了一些挑战。其中一个原因是在现有方法中忽略了钻串旋转的效果,其中弯曲壳体正排量电动机(PDM)被认为是预先结束的光束。根据D'·甲炔原理,通过钻串旋转产生的动态离心力等同于准静态问题。基于Timoshenko光束理论建立了具有弯曲壳体PDM的BHA的机械模型。推导出计算的比特侧力(BSF)和得到的转向力(RSF)的公式。研究了倾斜,钻弦,弯曲角度,偏心,稳定剂,位(WOB)上的重量和弯头位置的影响,在平均BSF和RSF上的影响。结果表明,钻弦的旋转速度对转向能力产生了重大影响。平均BSF随着钻串的转速而增加,而RSF首先增加并随后减少。控制因子是沿旋转速度低的钻柱重力的横向分量,而沿高旋转速度是离心力。 BSF爬起来,然后用钻弦的挥杆和转速下降。当钻串的转速超过100 rpm或wob高于80kn时,BSF将减小,导致角度累积的下降。本方法可用于优化钻孔参数,BHA配置和弯曲壳体PDM的结构。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号