压裂/压力泵送

白皮书——利用地震声学摩擦分析优化裂缝效率的非侵入式实时表面智能

了解 Seismos 的声学摩擦分析 (SAFA) 技术如何提供实时、基于地面的情报,与井下工具相媲美——增强流体分布、识别堵塞故障并在不中断作业或增加压裂成本的情况下实现更好的生产结果。

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与光纤、井下仪表或摄像机相比,SAFA 的诊断准确率高达 85% 至 98%,且成本仅为其一小部分,无需永久性基础设施或工作延误。

北美各地的运营商面临着越来越大的压力,需要用更少的资源实现更高的产量。Seismos 声学摩擦分析 (SAFA) 平台通过提供基于地面的实时替代传统井下诊断技术,解决了这一挑战,使运营商能够以前所未有的方式洞察压裂作业,而无需中断工作流程或预算。

本白皮书深入探讨了SAFA的工作原理、测量指标以及最重要的——它带来的切实运营和经济效益。SAFA利用高频地面传感器和专有算法,分析产量变化过程中的压力波动,从而量化从井筒到每个射孔簇的摩擦力。这些洞察使完井团队能够实时微调作业方案。

您将学到什么
下载此白皮书以探索 SAFA 提供的六个关键指标——穿孔效率、均匀度指数 (UI)、入孔直径 (EHD)、塞子性能、处理压力预测和井底处理压力——以及每个指标如何转化为井性能的可衡量改进。

真实用例,真实结果

  • 优化穿孔方案
    在二叠纪盆地,SAFA 数据支持重新设计穿孔策略,穿孔效率提高 10%,从而使 3 个月内总流体产量增加 3 桶/英尺。
  • 调整压裂液性能
    在压裂阶段处理中引入增加的粘度后,地震 UI 从 .42 改善到 .74。
  • 改善泥浆分布
    在特拉华盆地,SAFA 发现了阻碍泥浆分布的支撑剂计划。通过修改坡度计划和最大浓度,作业者实现了 14% 的均匀性提升。
  • 验证入口孔直径 (EHD)
    SAFA 显示实际 EHD 大于规格,从而促使重新评估射孔装药性能。
  • 及早识别堵塞故障
    SAFA 在堵塞泄漏造成严重问题之前就发现了特拉华盆地存在细微的泄漏迹象。及时的干预为作业者节省了约 15 万美元的补救成本,并避免了生产延误。

经济高效且可扩展
与光纤、井下仪表或摄像头相比,SAFA 的诊断准确率高达 85% 至 98%,且成本仅为其一小部分,无需永久性基础设施建设,也不会造成作业延误。它可部署于任何井型和地质条件下,使其成为现代完井策略的多功能工具。

经济优势
从节省柴油和优化减摩剂的使用到改进阶段完成决策和延长阶段长度,SAFA 的价值快速增加——每口井的 NPV 改善高达 100 万美元,并显著降低处理成本。

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原文链接/JPT
Fracturing/pressure pumping

Whitepaper—Noninvasive Real-Time Surface Intelligence To Optimize Fracture Efficiency With Seismos Acoustic Friction Analysis

Discover how Seismos' Acoustic Friction Analysis (SAFA) technology delivers real-time, surface-based intelligence that rivals downhole tools—enhancing fluid distribution, identifying plug failures, and driving better production outcomes without disrupting operations or increasing fracturing costs.

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Compared to fiber optics, downhole gauges, or cameras, SAFA provides from 85 to 98% of the diagnostic accuracy at a fraction of the cost—without requiring permanent infrastructure or job delays.

Operators across North America are under increasing pressure to deliver more production with fewer resources. The Seismos Acoustic Friction Analysis (SAFA) platform addresses this challenge by offering a surface-based, real-time alternative to traditional downhole diagnostics—bringing operators unprecedented visibility into their fracturing operations without disrupting workflows or budgets.

This white paper dives deep into how SAFA works, what it measures, and—most importantly—the tangible operational and economic benefits it provides. Using high-frequency surface sensors and proprietary algorithms, SAFA analyzes pressure oscillations during rate changes to quantify friction from the wellbore to each perforation cluster. These insights empower completions teams to fine-tune treatments in real time.

What You’ll Learn
Download this white paper to explore the six key metrics SAFA provides—perforation efficiency, uniformity index (UI), entry-hole diameter (EHD), plug performance, treating-pressure prediction, and bottomhole-treating pressure—and how each translates into measurable improvements in well performance.

Real Use Cases, Real Results

  • Optimizing Perforation Schemes
    In the Permian Basin, SAFA data enabled the redesign of a perforation strategy with a 10% increase in perf efficiency which led to 3 bbl/ft increase in total fluid production at 3 months.
  • Tuning Fracturing Fluid Properties
    Seismos UI improved from .42 to .74 after introducing increased viscosity to the frac stage treatment.
  • Improving Slurry Distribution
    In the Delaware Basin, SAFA uncovered a proppant schedule that was choking off distribution. By revising the ramp schedule and max concentration, the operator achieved a 14% improvement in uniformity.
  • Verifying Entry-Hole Diameter (EHD)
    SAFA revealed that actual EHDs were larger than spec, prompting a reevaluation of perf charge performance.
  • Identifying Plug Failures Early
    SAFA spotted subtle signs of plug leakage in the Delaware Basin—before it caused serious issues. Timely intervention saved the operator an estimated $150,000 in remedial costs and avoided production delays.

Cost-Effective and Scalable
Compared to fiber optics, downhole gauges, or cameras, SAFA provides from 85 to 98% of the diagnostic accuracy at a fraction of the cost—without requiring permanent infrastructure or job delays. It can be deployed across any well type and geologic condition, making it a versatile tool for modern completions strategies.

Economic Upside
From diesel savings and optimized friction-reducer usage to improved stage completion decisions and extended stage lengths, SAFA’s value adds up fast—delivering up to $1 million per well in NPV improvement and significant reductions in treatment costs.

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