Please use this identifier to cite or link to this item: https://dspace.univ-ouargla.dz/jspui/handle/123456789/41367
Title: Closed-Loop Geothermal Heat Recovery Predictions: Impact of Time-Dependent Gradient Decay and Fracture Thermal Resistance
Authors: Nemer, Zoubida
DJEDIAI, NASR Eddine
Keywords: Closed-loop
geothermal system
supercritical CO₂
Krechba Field
Ahnet Basin
natural fractures
heat transfer
abandoned wells
Issue Date: 2026
Abstract: This study examines the potential conversion of an abandoned well in the Krechba Field, Ahnet Basin, Algeria, into a closed-loop geothermal system using supercritical CO₂ as the working fluid. The research focuses on evaluating the effect of natural fracture properties on long-term heat extraction performance. A numerical model was developed to simulate conductive heat transfer along a 3000 m wellbore divided into 300 vertical segments, using geological, thermal, operational, and fracture-related parameters representative of the Krechba Field. Sensitivity analysis was conducted over a 30-year simulation period to assess the effects of fracture density, water saturation, fracture filling type, mass flow rate, and stratigraphic layer properties. The results show that higher fracture density and water saturation improve heat extraction, while mineralized or gouge-filled fractures reduce thermal performance. The study also shows that mass flow rate affects outlet temperature and heat delivery, and that improving fracture properties across all layers gives the highest thermal output. Overall, the results confirm that closed-loop geothermal systems using supercritical CO₂ can provide stable long- term performance in mature petroleum fields.
Description: Kasdi Merbah University – Ouargla Faculty of Hydrocarbons, Renewable Energies and Earth and Universe Sciences Department of Earth and Universe Sciences Professional Master’s Thesis Field: Earth and Universe Sciences Major: Geology Specialization: Petroleum Geology
URI: https://dspace.univ-ouargla.dz/jspui/handle/123456789/41367
Appears in Collections:Département des Sciences de la terre et de l’Univers - Master

Files in This Item:
File Description SizeFormat 
DJEDIAI NASR Eddine.pdf2,25 MBAdobe PDFView/Open


Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.