首页> 外文期刊>Journal of Petroleum Science & Engineering >Experimental investigation of the effect of drill pipe rotation on improving hole cleaning using water-based mud enriched with polypropylene beads in vertical and horizontal wellbores
【24h】

Experimental investigation of the effect of drill pipe rotation on improving hole cleaning using water-based mud enriched with polypropylene beads in vertical and horizontal wellbores

机译:用垂直和水平井筒中的聚丙烯珠富含水性泥浆改善孔清洗钻孔清洗效果的实验研究

获取原文
获取原文并翻译 | 示例
       

摘要

Field experience has shown that the inefficient transport of small cuttings is a main factor contributing to excessive drag and torque during the drilling of a deviated hole; however, very little is known about the transport behavior of small cuttings. This experimental study investigates the effect of different polypropylene bead concentrations in water-based mud (WBM) on hole cleaning, along with the effects of cutting size, drill pipe rotation, and hole inclination angle. A total of 160 runs were performed using an experimental rig consisting of a 13 ft (3.96 m) long casing with a 2 in (50.8 mm) Inner Diameter (ID) and a rotary inner pipe with a 0.8 in (20 mm) Outer Diameter (OD). Four cutting size ranges, namely, 0.5-1.0 mm, 1.0-1.4 mm, 1.4-1.7 mm, and 1.7-2.0 mm, with a density of 2400 kg/m(3) were tested in WBM with varying polypropylene bead concentrations ranging from 0 to 8 ppb. The concentric annulus flow test section was changed to vertical and horizontal angles with pipe rotation from 0 to 150 rpm. The mud density and viscosity were maintained at 10 ppg and 16 cp, respectively, under a flow velocity of 3.48 m/s (Reynolds number of 6620). The results indicate that smaller cuttings are easier to transport at all pipe rotations and polypropylene bead concentrations in both vertical and horizontal holes. The optimal pipe rotational speed was found to be 60 rpm. In this study, polypropylene beads undeniably enhanced the mud carrying capacity by significantly increasing the cutting transport ratio (CTR) by up to 16.57% in vertical holes and 15.73% in horizontal holes.
机译:现场经验表明,小型切屑的低效运输是在钻孔钻孔期间有助于过度阻力和扭矩的主要因素;然而,关于小型扦插的运输行为,很少少于众所周知。该实验研究研究了不同聚丙烯珠粒浓度在水性泥浆(WBM)上的孔清洗中的影响,以及切割尺寸,钻管旋转和空穴倾斜角度的影响。使用由13英尺(3.96米)长套管组成的实验装置,通过具有2英寸(50.8mm)的内径(ID)和0.8英寸(20mm)的外径的旋转内管组成的实验装置来进行总共160个运行。 (OD)。四个切割尺寸范围,即0.5-1.0 mm,1.0-1.4 mm,1.4-1.7 mm,1.7-2.0 mm,在WBM中测试了2400 kg / m(3),具有不同的聚丙烯珠粒浓度范围0到8 ppb。同心环形流量试验部分改变为垂直和水平角,从0到150rpm的管道旋转。在3.48m / s的流速下,分别在10ppg和16cc下保持泥浆密度和粘度(Reynolds的6620)。结果表明,较小的切割在垂直和水平孔中的所有管道旋转和聚丙烯珠粒浓度方面更容易运输。发现最佳的管道转速为60rpm。在本研究中,聚丙烯珠粒通过显着将切割运输比(CTR)在垂直孔中显着增加12.57%,水平孔中的15.73%,因此聚丙烯珠子无疑虑地增强了泥浆承载能力。

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