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Flow Diverting for Reducing Wellbore Erosion in Gas-Drilling Shale Gas Wells

机译:降低天然气钻井页岩气井井眼侵蚀的分流

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摘要

With the downturn in natural gas prices, it is vitally important to reduce the cost of drilling shale gas wells. Gas-percussion drilling has been recently employed in shale gas field development. It increases footage capacity by nearly 60%. However, wellbore erosion by the high-velocity gas has been recognized as a problem that hinders further application of the technology. This paper investigates a potential solution to the problem using a new type of flow-diverting joint (FDJ). The FDJ with exchangeable nozzles can be installed at the shoulder of the drill collar to partially bypass gas flow into the annulus between the drill pipe and open hole. Hydraulics computations with a state-of-the-art computer program indicate that this technique will allow for the use of high-gas injection rate to carry drill cuttings while reducing the gas flow rate through the drill bit. As a result, the gas velocity in the drill collar-open hole annulus can be maintained at a safe level to prevent hole erosion. The reduced gas flow rate through the drill bit also minimizes wellbore enlargement at hole bottom. Sensitivity analyses with the computer program show that the FDJ-nozzle area to bit-nozzle area ratio is directly proportional to the annulus area ratio, and the bypassed flow rate fraction remains constant as drilling progresses. This makes the FDJ system easy to design and practical to use over a long section of hole to be drilled.
机译:随着天然气价格的下跌,降低页岩气井的钻井成本至关重要。在页岩气田开发中最近采用了气体冲击钻探。它可以将素材容量增加近60%。然而,已经认识到高速气体对井眼的侵蚀是阻碍该技术进一步应用的问题。本文研究了使用新型分流接头(FDJ)解决该问题的潜在方法。带有可更换喷嘴的FDJ可以安装在钻collar的肩部,以部分旁路气体流进入钻杆和裸眼之间的环空。使用最先进的计算机程序进行的水力计算表明,该技术将允许使用高气体注入速率来进行钻屑,同时减少通过钻头的气体流量。结果,可以将钻collar开孔环空中的气体速度保持在安全水平,以防止孔蚀。通过钻头的气体流速降低,也使井底底部的井眼扩大最小化。用计算机程序进行的敏感性分析表明,FDJ喷嘴面积与钻头喷嘴面积之比与环空面积之比成正比,并且随钻进进度旁路流量比例保持恒定。这使得FDJ系统易于设计,并且可以在较长的待钻洞中使用。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2013年第3期|031501.1-031501.4|共4页
  • 作者

    Jun Li; Boyun Guo; Kegang Ling;

  • 作者单位

    College of Petroleum Engineering, China University of Petroleum, Beijing 102249, China;

    Department of Petroleum Engineering, University of Louisiana at Lafayette, Lafayette, LA 70504;

    Department of Petroleum Engineering, University of North Dakota, Grand Forks, ND 58203;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:29:12

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