压裂混乱消失,自主控制出现

2025年9月30日
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通过泵的正常运行时间来衡量压裂完井效率的做法已经过时——真正的性能需要重新定义效率的真正含义。依靠自动化控制系统来维持连续泵送——本质上是远程执行任务以尽量减少人为干预——并不能显著优化吞吐效率或减少转换的混乱。 

TechnipFMC 的 iComplete 生态系统

相反,需要实施自主压力控制生态系统,特别是在进行模拟压裂作业时,以智能、自主地控制压力和转换。

自主压裂完井比仅仅实施自动连续泵送具有更智能的功能和更有意义的效率提升。

更智能的压裂完井效率指标

首先,需要定义一个更智能的完井作业效率指标,这需要牢记,这并非关乎控制压裂,而是关乎管理油井和最大化产量。当然,连续泵送很容易测量。但连续泵送的是什么?需要多长时间?

TechnipFMC 的 iComplete®高性能地面压力控制生态系统是一个自主集成平台,可实现马力与油藏之间的闭环。它为作业者提供持续砂流保障——即支撑剂向裂缝的输送不间断,直至该阶段完成。这种可靠性涵盖诸多关键因素,例如与所有泵的兼容性、业内最可靠的终端连接以及将人员从红区撤离的自主操作等。

反过来,砂流效率又能通过最大限度地减少钻机安装时间和非生产时间 (NPT) 来提高时间效率。结合 iComplete 自主完井作业带来的故障和安全风险的降低,以及可持续性和经济性的提升,这些效率有助于确保压裂作业的成功——即使现场有多个利益相关者参与,这也直接影响了成本的摊销率(即设备和人员的每日总成本)。

从自动化到自主:有什么区别?

在 TechnipFMC,我们一致认为自动化非常适合简化重复性任务,这确实有助于提高效率。但自动化仍然需要操作员进行微观管理,而自主系统则通过可靠地执行预定的重复性任务序列(无论是在一口还是多口井或平台)来提高效率,而无需人工干预,这不仅消除了引入错误的可能性,还能让操作员专注于高价值的战略性工作。

我们的 iComplete 高性能表面压力遏制生态系统通过其 Cyber ​​Frac® 数字主干网结合先进的导弹和井系统实现完全自主,通过运营安全和成果、砂流效率以及增强高风险活动人员的安全性来实现效率目标。

操作员可根据需要在数字 Cyber​​Frac 自主平台内保留控制权,而 iComplete 生态系统可自主处理完井作业的众多常规、高度可配置的任务,特别是在多级平台到平台部署和同步压裂中。

iComplete 自主性推动更快、更安全、更智能的简化

结合其生态系统设计,iComplete 部署简化了操作,通过减少 90% 的连接和 50% 的组件来提高效率,从而通过更快的装配、更少的维护周期和更低的运营计划风险来提高运营效率,总共降低 30% 的成本。

推动这一效率的关键技术系统是:

  • HyperFrac™ 先进的模块化导弹系统通过隔离泵组来实现维护,从而消除了更换泵时产生的停机时间和拖车移动的麻烦。通过隔离泵组,HyperFrac 实现了定时维护,避免了泵发生故障时匆忙更换泵的情况。
  • 远程压裂先进免维护井系统利用 PadFlex™ 高压柔性管技术,轻松连接多个压裂平台,高效提升同步压裂作业效率。无需移动马力和支付单井压裂作业的附加费用,连接数量减少 97%,钻机安装速度提高 50%,从而显著节省成本。
  • PadFlex 内衬的极低摩擦系数实现了业内最低的压降,再加上高机械抗腐蚀性能,可实现 80 英尺/秒的流速。PadFlex 不仅流速更快,而且更安全,其端部连接夹采用我们专有的密封技术,实现了业内首创:零灾难性分离。

另一个颇具吸引力的高效方案是将 iComplete 生态系统与电力系统相结合,以提高运营可持续性,同时消除与液压阀操作相关的非工作时间 (NPT) 以及柴油和相关人工成本。我们的电力系统仅消耗压裂作业产生的缓冲垫中极低的电力。通过在 iComplete 生态系统中使用电动执行器,故障模式可减少高达 90%。电动阀操作高度可预测——每次8 秒 ,无论温度或平台位置如何。

少即是多

自主压力控制系统使非常规运营商能够以更少的停机时间、更少的人工监督和更少的关键路径人员完成更多工作,同时实现前所未有的砂浆输送效率。这种“少即是多”的转变至关重要,因为运营商希望实现其整个作业队的标准化和规模化,从而获得更好的业绩和经济效益。

请记住:自动化技术并非旨在取代人工,而是通过将人员重新集中到能够真正发挥作用的领域来提升运营绩效。iComplete 自动化生态系统每个班次、每个地点可以减少两名人员。这意味着每天可以减少四次通勤,并减少每日津贴和现场风险——仅劳动力成本(更不用说避免的风险)就足以弥补自动化系统实施带来的损失。

经过严格测试,可在全球范围内部署

自主研发的iComplete高性能地面压力控制生态系统已在要求严苛的北美市场得到验证,并可与任何泵送设备或压裂设备供应商无缝兼容。目前,全球新兴非常规油气田的运营商均可使用该系统。

从概念验证到全面扩展,iComplete 生态系统自主确保95% 以上的出砂效率,从而超越单纯的自动化成果,提升生产力和安全性。现在,运营商有机会突破自动化的标签,在完井作业中实现自主化,并在出砂连续性的情况下实现真正的高泵送效率。

原文链接/WorldOil

Frac chaos out, autonomous control in

September 30, 2025
Sponsored Content

Measuring frac completion efficiency by pump uptime is outdated—real performance demands a redefinition of what efficiency truly means. Reliance on automated control systems to maintain continuous pumping—essentially the performance of tasks remotely to minimize human intervention—does not substantially optimize throughput efficiency or lessen the scramble of transitions. 

TechnipFMC's iComplete ecosystem

Instead, implementation of an autonomous pressure control ecosystem, especially in conducting simul-frac operations, is required to intelligently and autonomously control pressure and transitions.

Autonomous frac completions deliver smarter capabilities and more meaningful efficiency gains than just the implementation of automated continuous pumping.

A smarter metric for frac completion efficiency

First, a smarter metric needs to be defined for completion operations efficiency, which requires keeping in mind that this is not about controlling the frac; it’s about managing the wells and maximizing throughput. Sure, continuous pumping is easy to measure. But what is being continuously pumped and what is the time required?

TechnipFMC’s iComplete® high-performance surface pressure containment ecosystem is an autonomous, integrated platform that closes the loop between horsepower and the reservoir. It provides operators with the assurance of a continuous sand-flow guarantee—defined as proppant delivery to the fracture proceeds uninterrupted until the stage is complete. This reliability encompasses critical factors such as compatibility with all pumpers, the industry’s most dependable end connections, and autonomous operations that remove personnel from the red zone, among others.

Sand-flow efficiency, in turn, drives time efficiency by minimizing rig-up time and nonproductive time (NPT). Combined with the mitigation of failures and safety risks and improvements in sustainability and economics achieved with autonomous iComplete completion operations, these efficiencies help ensure frac job success—even when multiple stakeholders are present on location, which directly impacts the spread rate (i.e., the total daily cost of equipment and personnel).

From automation to autonomy: What’s the difference?

At TechnipFMC, we agree that automation is ideally suited for streamlining repetitive tasks, which does contribute to efficiency. But automation still requires micromanagement by the operator, whereas autonomous systems drive efficiency by reliably performing predefined sequences of repetitive tasks—whether at one or multiple wells or pads—independently of human intervention, which not only eliminates the likelihood of introducing error but also frees operators to focus on high-value strategic work.

Our iComplete high-performance surface pressure containment ecosystem enables full autonomy through its CyberFrac® digital backbone in combination with advanced missile and well systems to realize efficiency goals through operational security and outcomes, sand-flow efficiencies, and enhanced safety for personnel involved in high-risk activities.

Operators retain control within the digital CyberFrac autonomous platform as needed, while the iComplete ecosystem autonomously handles the numerous routine, highly configurable tasks of well completion operations, particularly across multistage pad-to-pad deployment and simul-fracs.

iComplete autonomy drives faster, safer, smarter simplification

In conjunction with its ecosystem design, iComplete deployment simplifies operations to boost efficiency by reducing connections by 90% and components by 50%, which contributes to operational efficiency through faster rig-up, fewer maintenance cycles, and less risk to the operational schedule, totaling 30% lower costs.

Key technology systems driving this efficiency are:

  • HyperFrac™ advanced modular missile system eliminates the operational downtime and tractor trailer movement of pump swaps by allowing maintenance through the heretofore impossible isolation of pump banks. By compartmentalizing pump banks, HyperFrac enables scheduling maintenance—eliminating the rush to swap out when pumps fail.
  • Remote frac advanced maintenance-free well systems leverage PadFlex™ high-pressure flexible pipe technology to easily connect multiple frac pads and efficiently boost simultaneous fracturing operations. Moving horsepower and paying surcharges for single-well frac operations are eliminated, with additional significant cost savings delivered through 97% fewer connections that drive 50% faster rig-up.
  • The extremely low friction factor of the PadFlex inner liner delivers the industry’s lowest pressure drop, which in combination with high mechanical resistance to erosion, allows flow at 80 ft/s. PadFlex not only flows faster but also safer, with end connection clamps using our proprietary sealing technology to provide an industry first: zero catastrophic separations.

An additional attractive efficiency option is deploying the iComplete ecosystem with an electrical power system for greater operational sustainability while eliminating the NPT associated with hydraulic valve operation and the costs for diesel fuel and associated labor. Our electrical power system runs on absolutely minimal power drawn from the cushion generated for frac execution. By enabling the use of electric actuators with the iComplete ecosystem, failure modes are reduced by up to 90%. Electric-operated valve operation is highly predictable—8 seconds every time, regardless of temperature or location on the pad.

The power of less

Autonomous pressure-control systems enable unconventional operators to do more with less downtime, less manual oversight, and less personnel in critical pathways while achieving previously unobtainable efficiencies in sand slurry delivery. This shift to less equals more efficiency is critical as operators look to standardize and scale across their fleets for better results and economics.

Keep in mind: Autonomous technology isn’t about replacing people—it’s about improving operational performance by refocusing them to where they can make a true difference. The autonomous iComplete ecosystem can release two people per shift, per location. That’s four fewer daily commutes along with per diems and onsite risks—and just the labor cost alone, much less the risk avoided, can compensate for autonomous system implementation.

Rigorously tested for deployment globally

The autonomous iComplete high-performance surface pressure containment ecosystem was developed and proved in the highly demanding North American market and is seamlessly compatible with any pumper or fracturing unit provider. It’s now accessible for operators worldwide across emerging unconventional plays.

From proving concepts to scaling across operations, the iComplete ecosystem autonomously ensures 95%+ sand-flow efficiency, enabling productivity and safety improvement beyond mere automation-enabled results. Now is the opportunity for operators to move past the automation label to implement autonomy in well completions and achieve actual high-rate pumping efficiency with sand-flow continuity.