首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >A NOVEL MODEL FOR CATENARY DRILLING AND DRILL STRING INDUCED STRESSES
【24h】

A NOVEL MODEL FOR CATENARY DRILLING AND DRILL STRING INDUCED STRESSES

机译:钻进和钻进引起应力的新模型

获取原文

摘要

Petroleum engineers are aware of the advantages of directional and horizontal wells. In case of intermediate deep wells, the preference is the customary solution, in which a well is drilled vertically to the kick off point, and then moved directionally to the reservoir level. Nowadays, due to the advent of extended reach drilling, this approach does not satisfy the meant goal anymore. In extended reach drilling, the concern lies on the drill pipe's strength. Because of the great depth of the borehole, the torque and tension below the drill floor increase and could reach the drill pipe's strength. Therefore, in order to extend the wellbore reach, it is necessary to minimize the torque and drag. Several authors have mentioned that catenary profile may help reduce torque and drag. The purpose of the paper is to analyze the mechanics of the drill string, and to understand the stress distribution along the drill string and the geometry of the well configurations while bringing the borehole from a vertical to a horizontal position. . This will be achieved by means of an analytical comparison between the catenary profiles and the conventional well configurations. A novel catenary profile which improves the previous models is also presented in this paper. The modified catenary has a larger curvature of the drill string; particularly in the upper parts of the borehole the bending stresses are small. The modified catenary profile, which resembles a free hanging cable, can be a novel method in directional drilling of deep and extended reach wells. Thus, the build rate in the modified catenary is being continuously increased until it reaches the desired position. It is different from conventional methods used especially in horizontal drilling to connect the vertical and the horizontal section, where the build rate is kept constant. The focus of this paper lies on the study of catenary's geometry as a complex well path and the induced stress. Different approaches are used and compared.
机译:石油工程师意识到定向井和水平井的优势。如果是中深井,则优先选择常规解决方案,在该解决方案中,将一口井垂直钻至开井点,然后定向移至储层水平。如今,由于大范围钻进的出现,这种方法不再能够满足预期的目标。在大范围钻进中,关注点在于钻杆的强度。由于钻孔深度很大,钻台下方的扭矩和张力会增加,并可能达到钻杆的强度。因此,为了扩展井眼的范围,必须使扭矩和阻力最小化。几位作者提到悬链线轮廓可能有助于减小扭矩和阻力。本文的目的是分析钻柱的力学,并了解沿钻柱的应力分布和井眼构造的几何形状,同时将井眼从垂直位置移至水平位置。 。这将通过悬链线剖面与常规井眼配置之间的分析比较来实现。本文还提出了一种新型的悬链线轮廓,该轮廓改进了先前的模型。改进的悬链线具有较大的钻柱曲率。特别是在钻孔的上部,弯曲应力很小。修改后的悬链线轮廓类似于自由悬挂的电缆,可能是在深井和延伸井中进行定向钻井的一种新颖方法。因此,改进的悬链线中的构建速率不断提高,直到达到所需位置为止。它与传统方法不同,尤其是在水平钻孔中连接垂直部分和水平部分的常规方法,在常规方法中,构建速率保持恒定。本文的重点在于研究悬链线的几何形状(作为复杂的井道和诱发应力)。使用和比较了不同的方法。

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