SIMULATION OF GEOTHERMAL ENERGY PRODUCTION UTILIZING ABANDONED OIL AND GAS WELLS

dc.contributor.author Abusalam N. Mukhtarov
dc.contributor.author Gülden Gökçen Akkurt
dc.contributor.author Nurdan H. Yildirim
dc.date.accessioned 2025-10-06T17:49:02Z
dc.date.issued 2024
dc.description.abstract Abandoned oil and gas wells (AOGWs) with suitable reservoir temperatures present a promising opportunity to convert subsurface heat into thermal energy or electricity for various applications. This study developed a rigorous thermodynamic model for a single-flash geothermal power plant utilizing a double-pipe direct heat exchanger (DHE) leveraging data from existing literature and modeling via Engineering Equation Solver (EES) software. The model simulates the system using R134a as the working fluid assessing the influence of rock properties geothermal gradient DHE geometry insulation thickness mass flow rate of the working fluid and alternative working fluids on heat extraction efficiency. This innovative approach allows for the efficient utilization of available geothermal heat resources thereby enhancing the potential for sustainable energy generation. Key findings reveal that the power generation potential from AOGWs employing DHEs is significantly affected by the geothermal gradient within the well the length of the heat exchanger and the thermal conductivity of the surrounding rock. Additionally the model projects the system's long-term performance over a 20-year period emphasizing the importance of variable fluid characteristics inside the exchanger. Overall the simulations underscore the necessity of carefully considering these factors to optimize energy extraction from AOGWs. The results highlight the feasibility of harnessing geothermal energy in low-flow-rate conditions ultimately contributing to the sustainability of energy resources and offering insights for future developments in geothermal energy systems. This approach not only addresses environmental concerns associated with AOGWs but also positions them as viable assets for renewable energy generation. © 2025 Elsevier B.V. All rights reserved.
dc.identifier.doi 10.5510/OGP20240401022
dc.identifier.issn 22188622, 22186867
dc.identifier.issn 2218-6867
dc.identifier.issn 2218-8622
dc.identifier.uri https://www.scopus.com/inward/record.uri?eid=2-s2.0-85213859629&doi=10.5510%2FOGP20240401022&partnerID=40&md5=8a1c11d7e54dc078807f56d137b0f3db
dc.identifier.uri https://gcris.yasar.edu.tr/handle/123456789/8254
dc.language.iso English
dc.publisher Oil Gas Scientific Research Project Institute
dc.relation.ispartof SOCAR Proceedings
dc.source SOCAR Proceedings
dc.subject Abandoned Hydrocarbon Wells, Geothermal Energy, Power Generation, Firedamp, Geothermal Fields, Geothermal Wells, Natural Gas Wells, Oil Wells, Petroleum Reservoir Evaluation, Abandoned Hydrocarbon Well, Direct Heat Exchangers, Energy, Energy Productions, Geothermal Gradients, Oil And Gas Well, Power- Generations, Reservoir Temperatures, Thermal Electricity, Working Fluid, Abandoned Wells
dc.subject Firedamp, Geothermal fields, Geothermal wells, Natural gas wells, Oil wells, Petroleum reservoir evaluation, Abandoned hydrocarbon well, Direct heat exchangers, Energy, Energy productions, Geothermal gradients, Oil and gas well, Power- generations, Reservoir temperatures, Thermal electricity, Working fluid, Abandoned wells
dc.title SIMULATION OF GEOTHERMAL ENERGY PRODUCTION UTILIZING ABANDONED OIL AND GAS WELLS
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gdc.description.endpage 93
gdc.description.startpage 85
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oaire.citation.endPage 93
oaire.citation.startPage 85
person.identifier.scopus-author-id Mukhtarov- Abusalam N. (59497381900), Akkurt- Gülden Gökçen (56010236400), Yildirim- Nurdan H. (14061388000)
publicationissue.issueNumber 4
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