套管/固井/区域隔离

固井与层间隔离-2025

固井和层位封隔对作业公司和服务提供商来说仍然是一个重要课题。此外,学术和现场应用论文数量的增加表明,作业公司并不缺乏实质性改进现有方法和技术的主动性。

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我们收到的论文投稿数量每年都比上一年多,这充分表明固井和层封隔仍然是运营商和服务提供商关注的重要课题。此外,学术和领域驱动型论文的数量也在增加。这表明运营商并不缺乏实质性改进现有方法和技术的主动性。

SPE/IADC 221446号论文概述了控压固井在油井生命周期中的演变,如今其应用范围已超越了传统的初始固井应用,进入了补救阶段。控压初始固井不仅能够降低窄边井的损失风险,还能在存在类似挑战的补救应用中发挥作用。这是固井和区域封隔领域技术不断发展的一个很好的例子。看到阶跃式技术应用于超越其最初设想的新应用领域,总是令人兴奋不已。

SPE 220564 号论文对套管与水泥浆的胶结质量进行了深入探讨,并介绍了一种新的套管表面改性方法,该方法不仅可以提高胶结质量,还能形成耐腐蚀层。本文概述了各种套管表面改性方法的实验室比较,以及新方法的现场验证。在修井或修井作业的特定阶段,例如隔离高难度井段或结痂衬管的部署,该技术的实施无疑将受益匪浅。

论文 SPE 223263 展示了如何在作业前期或作业后评估阶段准确模拟井漏的影响。井漏会对井筒施工期间的初次固井产生显著的负面影响。能够模拟作业前的漏失情况,可以相应地调整井筒设计。或者,当发生意外漏失时,能够对此类漏失的机理和严重程度进行作业后模拟,可以更好地制定补救计划。本文概述了多个深入的案例研究。

列出的补充阅读论文很好地结合了去年主要选集的后续内容、相关的实验室测试以及新技术的现场应用。

感谢所有运营商和服务公司每年合作创造出如此精彩的内容。

2025 年 5 月期刊中的论文摘要

SPE 221446 深水控制压力固井恢复生产, 作者:Pier Alvarado、Sundar Ramasamy 和 Juan C. Valecillos,Weatherford 等人。

SPE 220564 技术通过减轻套管与水泥脱粘来提高井完整性, 作者:沙特阿美公司的 Mohammed Alibrahim 和 Mahdy Jezany,以及 ENPRO 的 Ahmed Sadeed 等人。

SPE 223263 在初级固井作业设计中准确模拟循环损失, 作者:Martijn Bogaerts Nicolas Flamant 和 Ahmed Abdulaal、SLB 等人。

推荐补充阅读

SPE 223667 用于亚 150 微米间隙挤压固井的水泥混合物的渗透和封堵性能的实验研究, 作者:阿尔伯塔大学的 Muhammad A. Thaika 等人

OTC 34869 克服未固化或微环条件下的水泥评估挑战——高级剪切和弯曲测量案例, 作者:Sebastien Kamgang、Baker Hughes 等人

SPE/IADC 219610 用于堵水的新型井下环状屏障解决方案——Uwait 案例研究, 作者:Jonathan Koch、Shell 等人。

SPE/IADC 223673 采用树脂基材料进行微环隙处理的密封性和耐久性评估:全尺寸测试段的渗透性和示踪剂测量, 作者:K. Beltran Jimenez、NORCE 挪威研究中心等人

SPE/IADC 223690 用于评估环形屏障材料的实验室设置, 作者:N. Opedal、Sintef Industry 等人

Paul Henderson, SPE,是FET-Variperm的产品经理,曾从事产品开发和应用工程工作。凭借超过19年的行业经验,他为全球陆地和海上作业的各种建井和完井项目提供支持。Henderson在主要固井设备、套管硬件和隔离封隔器方面拥有丰富的经验。他拥有金斯顿皇后大学机械工程学士学位,并且是阿尔伯塔省专业工程师和地球科学家协会的专业工程师。

原文链接/JPT
Casing/cementing/zonal isolation

Cementing and Zonal Isolation-2025

Cementing and zonal isolation remains an important topic to operators and service providers alike. Additionally, an increase in the number of papers with both academic and field-driven content shows that there is no lack of initiative for operators to materially improve on existing methods and technology.

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We continue to receive more paper submissions every year than the last, which is a good sign that cementing and zonal isolation remains an important topic to operators and service providers alike. Additionally, there is an increase in the number of papers with both academic and field‑driven content. This shows that there is no lack of initiative for operators to materially improve on existing methods and technology.

Paper SPE/IADC 221446 outlines the evolution of managed pressure cementing within the well life cycle, now being used beyond its conventional primary cementing application and into the remedial stage. While managed pressure primary cementing mitigates the risk of losses in narrow-margin situations, it also can do so in remedial applications where similar challenges exist. This is a great example of evolving technology within the cementing and zonal isolation space. It is always exciting to see step-change technologies adapted to new applications beyond those for which they were originally intended.

Paper SPE 220564 offers a robust discussion on casing-to-cement bond quality and introduces a new method of casing-surface modification that not only enhances bond quality but also serves as a corrosion-resistant layer. This paper outlines a laboratory comparison of various casing-surface modifications, as well as a field validation of the new method. Specific stages of well construction or workover, such as isolating challenging intervals or scab liner deployment, surely can benefit from the implementation of this technique.

Paper SPE 223263 shows how we can accurately simulate the effect of lost circulation either during the prejob phase or during post-job evaluation. Lost circulation can have a significant negative effect on primary cementing during well construction. Having the ability to simulate fluid loss prejob allows for adjustments to be made to the well design accordingly. Alternatively, when unexpected losses occur, being able to perform post-job simulations on the mechanism and severity of such losses allows for better remedial planning. Multiple in-depth case studies are outlined in this paper.

The papers listed for additional reading are a good mix of follow-ups to last year’s primary selections, relevant laboratory testing, and field applications of novel technologies.

Thank you to all of the operators and service companies who collaborate to generate such excellent content each year.

Summarized Papers in This May 2025 Issue

SPE 221446 Managed Pressure Cementing in Deep Water Restores Production by Pier Alvarado, Sundar Ramasamy and Juan C. Valecillos, Weatherford, et al.

SPE 220564 Technique Improves Well Integrity by Mitigating Casing-to-Cement Debonding by Mohammed Alibrahim and Mahdy Jezany, Saudi Aramco, and Ahmed Sadeed, ENPRO, et al.

SPE 223263 Lost Circulation Simulated Accurately in Primary Cementing-Job Design by Martijn Bogaerts Nicolas Flamant, and Ahmed Abdulaal, SLB, et al.

Recommended Additional Reading

SPE 223667 Experimental Investigation of Penetration and Plugging Performance of Cement Blends Used for Squeeze Cementing in Sub-150-Micron Gaps by Muhammad A. Thaika, University of Alberta, et al.

OTC 34869 Conquering Cement-Evaluation Challenges in Uncured or Microannulus Conditions—The Case for Advanced Shear and Flexural Measurements by Sebastien Kamgang, Baker Hughes, et al.

SPE/IADC 219610 Novel Downhole Annular Barrier Solution for Water Shutoff—Kuwait Case Study by Jonathan Koch, Shell, et al.

SPE/IADC 223673 Sealing and Durability Evaluation of Microannulus Treatment With a Resin-Based Material: Permeability and Tracer Measurements in a Full-Scale Test Section by K. Beltran Jimenez, NORCE Norwegian Research Center, et al.

SPE/IADC 223690 Laboratory Setups for Evaluation of Annulus Barrier Materials by N. Opedal, Sintef Industry, et al.

Paul Henderson, SPE, is product manager at FET-Variperm, with previous roles in product development and applications engineering. With more than 19 years of industry experience, he has supported a wide variety of well-construction and well-completion initiatives across the globe in land and offshore operations. Henderson has significant experience with primary cementing equipment, casing hardware, and isolation packers. He holds a BS degree in mechanical engineering from Queen’s University at Kingston and is a professional engineer with the Association of Professional Engineers and Geoscientists of Alberta.