炭素回収・利用・貯留(CCUS)用途における坑井完全性の向上:断熱ガスブランケットの役割
Enhancing Well Integrity in Carbon Capture, Utilization, and Storage Applications: The Role of Insulating Gas Blankets (原題)
Ruggero Trevisan, Albert R. McSpadden
🤖 gxceed AI 要約
日本語
CO2地中貯留では、坑井の長期的な完全性が重要である。本研究は、チュービングとケーシングの間の環状部に断熱ガスブランケットを用いることで、CO2注入時の低温影響を緩和し、坑井の完全性を維持する方法を提案する。フローアシュアランスと応力解析を統合した解析により、窒素ガスブランケットの有効性を示し、新規掘削井と既存井の転用の両方に適用可能である。
English
For CO2 geological storage, long-term well integrity is critical. This study proposes using insulating gas blankets in the annulus to mitigate low-temperature effects during CO2 injection, maintaining well integrity. Integrated flow assurance and stress analysis demonstrate the effectiveness of nitrogen gas blankets, applicable to both new and repurposed wells.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
日本では、CCUSはカーボンニュートラル実現の重要施策であり、洋上・陸上でのCO2貯留プロジェクトが進行中。本技術は坑井の長期安全性を高め、CCUS事業の社会的受容性と経済性向上に寄与する。
In the global GX context
Globally, CCUS is a key decarbonization lever, and well integrity is a major concern for long-term storage. This study offers a novel, cost-effective method to enhance well integrity, relevant to international CCUS projects and regulatory frameworks.
👥 読者別の含意
🔬研究者:Provides a novel approach to well integrity in CCUS, integrating flow assurance and stress analysis.
🏢実務担当者:Offers a practical method to design CO2 injection wells with gas blankets, improving safety and performance.
🏛政策担当者:Highlights the importance of well integrity for CCUS project approval and long-term liability management.
📄 Abstract(原文)
Summary As part of the net-zero emission plan, capturing CO2 and storing it in geological formations is a key strategy. Existing wells are being repurposed, and new wells drilled to inject CO2 into depleted reservoirs as well as saline aquifers. These operations are expected to continue for decades, making long-term well integrity critical. The variability of the CO2 phase and the rapid and severe temperature drop during vaporization challenge well integrity, impacting tubulars, connections, annular fluids, cement sheaths, and casing shoes. Integrity of outermost strings and associated cement sheaths and supporting formations is a key concern with particular focus on compressive loads. This study examines the use of insulating gas blankets in the tubing-to-casing annulus and outer annuli as a thermal barrier, mitigating the cooling effects of CO2 while addressing potential issues related to fluid shrinkage and pressure stability maintenance. Gas blankets in wellbore annuli are investigated using a fit-for-purpose application that integrates nodal flow assurance for wellbore temperature and pressure predictions with tubular stress analysis of casing and tubing strings. Gas blanket effectiveness is driven by the relatively low conductivity of gases and negation of natural convection of annular fluids. Surface chokes and reservoir injectivity are incorporated into the flow assurance and stress analysis within a nodal framework. CO2 injection is simulated with particular emphasis on especially cold events, such as injection restart, turn-down, and steady low-rate injection. Annular fluid contraction and expansion are accounted for as loading conditions on tubulars. By combining these factors, an operability envelope for the tubing-to-casing annulus (A-annulus) is established, ensuring pressure remains within limits to maintain integrity. A case study is presented to illustrate the design of a well incorporating nitrogen gas blankets within its design framework. Preliminary results indicate that insulating gas in the annuli effectively reduces heat transfer, thereby maintaining well integrity during CO2 injection. Additionally, it provides a buffer against annular fluid contraction, enhancing long-term well safety and performance. The required gas volumes are determined by predicted temperatures from flow simulations and tubular loads. Such analysis is crucial for newly drilled CO2 injection wells and for repurposing existing wells, ensuring reusability. Thermally induced compression loads on outer and structural strings near surface require careful review, including specification and qualification of connections. Applying insulating gas blankets in CO2 storage wells is a novel approach. While gas blankets are commonly used in deepwater wells, their application in platform and land wells is rare, making this approach unconventional in such settings. Furthermore, gas blankets have yet to be deployed widely in carbon capture, utilization, and storage (CCUS) wells, presenting a unique opportunity for innovation. This method offers an effective and cost-efficient solution for managing low-temperature effects and enhancing well integrity in CCUS applications.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.2118/225879-pafirst seen 2026-08-29 04:42:03
🔔 こうした論文の新着を逃したくない方は キーワードアラート に登録(無料・3キーワードまで)。
gxceed は公開メタデータに基づく研究支援データセットです。要約・翻訳・解説は AI 支援で生成されています。 最終的な解釈・検証は利用者が原典資料に基づいて行うことを前提とします。