生产

人工举升:工具箱优化

在关于人工举升进展的两部分系列的第二部分中,我们将着眼于优化状态以及正在开发或市场上的新技术的三重技术和技术。在新的一年中寻找特定类型提升的季度回顾。

WhaleShark 气体和固体分离器已准备好安装在井中。
WhaleShark 气体和固体分离器已准备好安装在井中。
资料来源:Oilify。

长期以来,人工升力的故事一直是维持现状或“如果它没有坏,就不要修复它”的方法,但在此过程中一直存在适应和实验。

这种配对带来了一些创新,比如广为人知的油田象征——抽油机——以及井下隐藏的技术奇迹。

在关于人工举升进展的两部分系列的第二部分中,我们将着眼于优化状态以及正在开发或市场上的新技术的三重技术和技术。

没有“雪花”

十多年来,石油和天然气行业一直在努力解决页岩油藏开发生命周期的难题。

该周期的每个阶段都充满逆境,钻探和完井阶段在从垂直和横向数千英尺深的储层中释放资源的过程中面临着一系列挑战。

这些挑战一直持续到油井的生产阶段,随着狡猾的生产工程师和现场服务技术人员寻找解决方案来避免可怕的下降曲线,加快了适应和实验的周期。

“我们对页岩油藏的了解已经达到顶峰。早期,人们刚刚开始了解页岩是什么。地质学家了解页岩的构造,但从页岩中生产是一种新现象。”麦肯锡公司合伙人斯潘丹·斯潘丹 (Spandan Spandan) 表示,并补充说,该行业对油井设计和施工的理解也很深入。

“这本质上使我们能够将雪花井(针对其自身条件进行了很好的优化)转变为可以大规模生产的东西。油井的制造时代是由对油井的理解和极致优化推动的,”他说。

麦肯锡 2017 年的一份报告显示,希望利用制造业时代的页岩油生产商鼓励运营商主要根据价格选择设备和服务,迫使服务公司专注于开发低成本技术选择。

随着世界继续从 COVID-19 大流行以及地缘政治动荡中恢复过来,这一焦点仍然存在,地缘政治动荡增加了全球需求,给石油和天然气供应带来了压力。

“我们看到了更多的波动。”

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Production

Artificial Lift: Toolbox Optimization

In this second part of a two-part series on advances in artificial lift, we’ll look at the state of optimization and a trio of techniques and technologies under development or new to the market. Look for quarterly reviews of specific types of lift in upcoming issues in the new year.

The WhaleShark gas and solids separator is made ready for installation in a well.
The WhaleShark gas and solids separator is made ready for installation in a well.
Source: Oilify.

The story of artificial lift has long been one of maintaining the status quo or the “if it ain’t broke, don’t fix it” approach, but adaptation and experimentation have been present along the way.

From this pairing came innovations like the widely recognized symbol of the oil patch—the pumpjack—and the hidden marvels of technological wizardry that dwell downhole.

In this second part of a two-part series on advances in artificial lift, we’ll look at the state of optimization and a trio of techniques and technologies under development or new to the market.

No ‘Snowflakes’

For more than a decade the oil and gas industry has worked in from the edges in its quest to solve the puzzle that is the developmental life cycle of a shale reservoir.

Each stage in the cycle has been one of adversity, with the drilling and completion stages presenting a host of challenges in the process of unlocking resources from reservoirs thousands of feet deep vertically and laterally long.

These challenges continue into the well’s production stage, accelerating the cycle of adaptation and experimentation as crafty production engineers and field service technicians look for solutions to stave off the dreaded decline curve.

“Our understanding of shale reservoirs has gone through the roof. In the early days, people were just starting to understand what shale is. Geologists knew the construct of shale, but to produce from it was a new phenomenon,” said Spandan Spandan, partner at McKinsey & Co., adding that the industry’s understanding of well design and construction has also come far.

“This essentially allowed us to convert wells from a snowflake—each well optimized for its own conditions—to something that could be mass produced. The manufacturing era of wells was driven by the understanding of wells and by optimizing to the extreme,” he said.

Shale producers looking to capitalize on the manufacturing era encouraged operators to select equipment and services based primarily on price, forcing service companies to focus on developing low-cost technology options, according to a 2017 McKinsey report.

That focus remains as the world continues to recover from the COVID-19 pandemic along with geopolitical turmoil that has elevated global demand and placed pressure on oil and gas supplies.

“We’ve seen a lot more volatility.

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