一种井下调节器对钻速和钻井效率的性能分析:一种自主的钻头负载管理方法

Arviandy G. Aribowo, U. J. F. Aarsnes, E. Detournay, Nathan van de Wouw, N. Reimers
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引用次数: 0

摘要

在过去的几年中,使用自动解决方案来平衡钻头负载的情况每年都在增加。到2021年,用于此目的的井下工具已被用于1500多口井,这可能成为钻井中增长最快的趋势。当能够实现稳定切削时,聚晶金刚石紧凑型(PDC)钻头代表了钻井经济的巨大潜力。然而,深层钻井通常涉及较长的钻柱,导致一系列动态不稳定,从而影响钻头的稳定切削条件。这种行为会影响钻进速度(ROP)和系统损坏和故障。这为改善钻井性能留下了巨大的潜力。大约20年前,在Stavanger的Ulrigg完成了第一次自主井下调节器的实验,以挖掘这一潜力。此后,类似工具的几个版本已经开发出来,使用各种机械和液压功能来修改和改变作用在钻头上的力,以提高钻井性能。挪威Equinor公司从一开始就参与了这一新的自动化趋势。到2020年,他们已经在挪威大陆架的93个井段部署了井下调节器。在本文中,Equinor分享了将前93段与常规BHA进行比较的统计图。数据显示,除了最初的减少振动的任务外,调整器的不断改进最终如何导致ROP和进尺的逐步提高。通过利用各种动态模型、预测和灵敏度分析,发现井下调节器可以改变钻头的动态响应,从而减少钻头的摩擦损失,提高切削效率。在本文中,研究表明,在两个关键方面发挥作用的实际场景中,也可以预期这些效益:1)PDC钻头穿透非均质岩层;2)在斜井中,由于井眼与钻柱接触造成的两次摩擦损失。本文对一种新的钻井技术的基本原理、先进的数学模型和统计结果提供了独特的见解。自主监管机构降低了风险和钻井时间,对成本产生了重大影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Analysis of a Downhole Regulator on Rate-Of-Penetration and Drilling Efficiency: An Autonomous Load Management at Bit
Over the last years, the use of autonomous solutions for balancing the loading on the drill-bit has increased annually. By 2021, downhole tools for this purpose have been used for more than 1,500 wells and these become possibly the fastest growing trend in drilling. Polycrystaline Diamond Compact (PDC) drill-bits represent a great potential for drilling economics when steady cutting is attainable. Deep drilling, however, typically involves long drillstring causing an array of dynamic instabilities preventing steady cutting conditions at the bit. Such behavior affects drilling performance in terms of the rate-of-penetration (ROP) and system damage and failure. This leaves a big potential for improvement of drilling performance. The first experiments with an autonomous downhole regulator constructed were completed at Ulrigg in Stavanger almost twenty years ago to tap into this potential. Several versions of similar tools have since developed using a variety of mechanical and hydraulic functions to modify and shift the forces acting on the drill-bit in order to improve drilling performance. The Norwegian operator Equinor has participated from the very start of this new automation trend. By 2020 they had deployed downhole regulators to a total of 93 well sections on the Norwegian Continental Shelf alone. In this paper, Equinor shares statistic plots from comparing these first 93 sections to well section with conventional BHA's. The data show how the continuous improvement of the regulator eventually led to gradual improvement of both ROP and footage - in addition to its initial task of reducing vibrations. By utilizing a variety of dynamic models, predictions and sensitivity analysis, it has been revealed that the downhole regulator could change the dynamic response of the bit such that the friction losses at the bit are reduced and the rock cutting efficiency is improved. In this paper, it is shown that such benefits can also be expected in real-life scenarios in which two key aspects play a role: 1) a PDC bit penetrating heterogeneous layers of rock formations, and 2) involving two frictional losses due to borehole - drillstring contact in deviated wells. This paper brings a unique insight to the fundamentals, advanced mathematical models, and statistical results from a new line of drilling technology. The autonomous regulators bring a combination of reduction in risk and time to drill that makes a significant impact on cost.
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