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Optimization of Deep Drilling Performance: Benchmark Testing Drives ROP Improvements for Bits and Drilling Fluids

机译:深井钻井性能优化:基准测试驱动钻头和钻井液的ROP改进

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A critical cost in future deep oil and gas recovery is the cost to drill a well. This cost is dominated by the rate of penetration (ROP) that becomes increasingly important with increasing depth. Improving the technology of drilling and increasing the ROP will lower the cost to drill a well. This improves the economics of deep exploration and development, potentially increasing drilling activity, increasing production and supply, lowering the cost to the consumer and improving the economy. Industry partners and the U.S. Department of Energy (DOE) successfully completed benchmark testing of advanced diamond bits and high pressure/high temperature (HP/HT) drilling fluids at high pressures. The paper describes the results of this testing and identifies factors limiting ROP performance at great depth, and the development of drilling fluid systems and bit design philosophy to significantly improve drilling performance. Benchmark results match very well with data from target field applications. This project is part of the DOE Deep Trek program. Sixteen full-scale tests of 6 inch bits were conducted at wellbore pressures greater than 10,000 psi. Results from high- pressure tests with water and base oil showed very high ROPs are possible before mudding up. When drilling through hard sandstone penetration rates can drop 70 to 80% on switching to a weighted mud. These data emphasize the importance of mud technology in high-pressure applications. Performance of polycrystalline diamond compact (PDC) bits showed in many cases substantial improvements over roller cone insert bits. Cuttings from Carthage marble and Mancos shale appear to be compressed agglomerates of fine particles and Carthage marble cuttings had low compressive strengths. The study has concluded that opportunities for improvements in both bit design and smart HP/HT drilling fluids are possible. While rock properties change continuously with pressure the cutting mechanisms at great depths change much more dramatically. Changes in bit design and mud composition, using next generation technology, will be evaluated in Phase II testing. The significance of improved ROP for deep oil and gas plays include opportunities to reduce well costs and improve the economics of deep exploration and development plays. The net result for operators is cost reduction as well as an improved position on reserves.
机译:未来的深层油气回收中的批判性成本是钻井的成本。这种成本是通过普及率(ROP)的主导,随着深度的增加而越来越重要。提高钻井技术和增加ROP将降低钻井的成本。这改善了深度勘探开发的经济性,潜在地增加了钻井活动,增加了生产和供应,降低了消费者的成本和改善经济。行业合作伙伴和美国能源部(DOE)成功完成了高压钻石比特和高压/高温(HP / HT)钻井液的基准测试。本文介绍了该测试的结果,并确定了极其深度限制ROP性能的因素,以及钻井液系统和位设计理念的开发,以显着提高钻井性能。基准结果与目标现场应用程序的数据相匹配。该项目是DOE Deep Trek计划的一部分。在大于10,000psi的井筒压力下进行6英寸位的16个全刻度测试。用水和基础油的高压试验结果显示出非常高的ROPS在搅拌之前是可能的。当通过硬质砂岩渗透速率钻孔时,可以将70%降至80%的切换到加权泥浆。这些数据强调了泥浆技术在高压应用中的重要性。多晶金刚石芯片(PDC)位的性能在许多情况下显示出对滚子锥形插入位的大量改进。来自迦太基大理石和甘草页岩的切割似乎是细颗粒的压缩附聚物,迦太基大理石切割具有较低的抗压强度。该研究得出结论,位设计和智能HP / HT钻井液中的改进的机会是可能的。虽然岩石属性随着压力而连续变化,但大深度的切割机制更大地变化。使用下一代技术的位设计和泥浆组合物中的变化将在II期测试中进行评估。改善ROP对深油和天然气竞争的重要性包括减少井成本和改善深度勘探和开发的经济性的机会。运营商的净结果是降低成本,以及对储备的改进位置。

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