放棄された油井を地熱エネルギーに活用:ナイジェリアのエネルギー移行への技術経済的経路
Leveraging Abandoned Oil Wells for Geothermal Energy: A Techno-Economic Pathway to Nigeria's Energy Transition (原題)
R. D. Otubu, A. Adedeji, A. W. Banire
🤖 gxceed AI 要約
日本語
ナイジェリアの放棄された油井を地熱エネルギーに転用する技術経済的評価を実施。閉ループ地熱システムをモデル化し、直接利用と発電の両方でLCOEを試算。停止中または一時的に密閉された井戸が最も費用対効果が高く、LCOEは120〜180 $/MWh、熱の均等化コストは25〜45 $/MWh。政策支援が普及の鍵。
English
This study evaluates the techno-economic feasibility of repurposing abandoned oil wells in Nigeria for geothermal energy. A closed-loop system is modeled, showing LCOE of 120-180 $/MWh for electricity and 25-45 $/MWh for heat, with suspended wells being most cost-effective. Policy support is crucial for deployment.
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、廃坑や既存坑井の地熱利用が注目されており、本論文の技術的・経済的枠組みは日本の地熱開発やエネルギー転換政策に示唆を与える。特に、既存インフラ活用によるコスト削減は、日本の再生可能エネルギー拡大に参考となる。
In the global GX context
This paper provides a model for repurposing fossil fuel infrastructure for clean energy, relevant to global energy transition discussions. It offers a framework for assessing geothermal potential in oil-producing regions, which could inform similar initiatives in other countries.
👥 読者別の含意
🔬研究者:Provides a techno-economic framework for geothermal repurposing that can be adapted to other regions.
🏢実務担当者:Offers insights into cost-effective geothermal development using existing wells, relevant for energy companies.
🏛政策担当者:Highlights the need for supportive policies to enable geothermal repurposing as part of national energy plans.
📄 Abstract(原文)
Abstract The oil and gas industry remains Nigeria's dominant energy provider; however, global pressures for cleaner and more sustainable sources highlight the urgency of national energy diversification. One promising pathway is the repurposing of abandoned oil and gas wells for geothermal energy production, an approach that leverages existing subsurface infrastructure while significantly reducing the cost of new drilling. This opportunity could attract investment, enhance energy security, and reduce dependence on fossil fuels. Yet, the technical and economic viability of such systems in Nigeria remains largely underexplored, creating a critical knowledge gap this paper aims to address. This study develops a conceptual closed-loop geothermal system for abandoned Niger Delta wells. Wells were screened based on depth, temperature gradient, casing, and integrity; three representative cases were selected for thermo-economic modeling. A downhole U-tube heat exchanger with an insulated return leg was modeled, and multiple working fluids were evaluated for heat extraction efficiency, pumping requirements, and suitability for local geothermal conditions. The economic assessment considers well status (suspended, temporarily, or permanently plugged), including retrofitting costs, CAPEX, OPEX, surface facility costs, and levelized cost of energy (LCOE) for both direct-use and electricity generation applications. This approach enables a comparative assessment of technical and economic viability across case wells. Preliminary modeling indicates that the conceptual closed-loop geothermal system can deliver produced fluid temperatures of 131°F-167°F, sufficient for direct-use heating and low-temperature power generation. Economic analysis shows that retrofitting suspended or temporarily plugged wells is most cost-effective, with a modeled LCOE of 120-180 $/MWh and levelized cost of heat of 25-45 $/MWh. Overall, this study presents a pragmatic approach for turning decommissioning liabilities into useful energy assets while providing cleaner energy alternatives. However, widespread deployment will depend on supportive policies and integration into national renewable energy plans to enable commercial adoption.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.2118/234849-msfirst seen 2026-08-30 04:33:58
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