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calendar3 Iyul 2026
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MODELING OF HEAT PROPAGATION PROCESSES AROUND A GEOTHERMAL WELL USING COMSOL MULTIPHYSICS

Field of Science:Energy (miscellaneous)Energy Engineering and Power TechnologyRenewable Energy, Sustainability and the Environment
National field of science (HAC):02.00.08 — Chemistry and technology of oil and gas04.00.12 — Construction and operation of oil and gas pipelines, bases and storage facilities04.00.13 — Development and operation of oil and gas fields05.05.04 — Industrial heat power engineering05.05.01 — Power systems and complexes05.05.02 — Electrical engineering. Electric power stations and systems. Electrotechnical complexes and devices05.05.03 — Lighting engineering. Special lighting technologies05.05.09 — Nuclear power installations and technologies05.05.10 — Nuclear reactor engineering, machines, units and materials technology of the nuclear industry05.05.05 — Theoretical foundations of thermal engineering05.05.06 — Power installations based on renewable energy sources05.05.07 — Electrical technologies and electrical equipment in agriculture
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ARTICLE ANNOTATION

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Abstract. Introduction. Globally, the depletion of conventional fuel and energy resources, along with the increasing environmental impact, has made energy conservation and the efficient utilization of existing energy resources an urgent issue. Methods and Materials. The article investigates natural geothermal energy sources located in the Kashkadarya region and heat propagation processes around geothermal wells using the numerical modeling method. Heat transfer processes were determined based on numerical simulations using the COMSOL Multiphysics software platform. Results. It was established that with an increase in geothermal source temperature within the range of TG=50-75 ℃, the temperature gradient and the intensity of heat propagation in the soil medium increase significantly (Figures 1–3). Conclusion. The obtained results demonstrated the high potential for the efficient use of geothermal energy sources in building heating supply systems.

AUTHORS

Science ID: MSD-0825-0028

Science ID: FQD-0526-0150

Tags

# source# modeling# gradient# temperature# well# energy# heat# geothermal# propagation# numerical

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