Optimizing Multigenerational Renewable Energy Systems through Integrated Geothermal and Wind Energy Solutions

Kanaga Bharathi Nageswaran*, Devi Vighneshwari**, M. Abirami***, Hariprasath Manoharan****
* Department of Electrical and Electronics Engineering, Bangalore College of Engineering and Technology, Bengaluru, India.
** Department of Electrical Engineering, Annamalai University, Chidambaram, Tamil Nadu, India.
*** Department of Electrical Engineering, Annamalai University, Chidambaram, Tamil Nadu, India.
**** Department of Electronics and Communication Engineering, Panimalar Engineering College, Chennai, Tamil Nadu, India.
Periodicity:July - September'2024
DOI : https://doi.org/10.26634/jps.12.2.21505

Abstract

In order to effectively tackle the increasing energy demands resulting from urbanization, modernization, and economic activities, it is imperative to develop novel solutions that simultaneously mitigate greenhouse gas emissions and meet energy needs. This study investigates the feasibility of integrating wind and geothermal energy sources to enhance the efficacy and effectiveness of multigenerational renewable energy systems. Case Study 1 investigates the application of a geothermal-wind hybrid system to maximize the efficacy of the Kalina cycle, demonstrating significant improvements in both energy and exergy utilization. Case Study 2 conducts a sensitivity analysis to evaluate the system's performance, providing critical information pertaining to wind velocities and thermal efficiencies. This study emphasizes the importance of thorough modeling and optimization, in addition to the potential of incorporating renewable energy sources to drive progress in sustainable energy.

Keywords

Geothermal Energy, Wind Energy, Kalina Cycle, Energy Efficiency, Renewable Energy Integration.

How to Cite this Article?

Bharathi, K. N., Vighneshwari, D., Abirami, M., and Manoharan, H. (2024). Optimizing Multigenerational Renewable Energy Systems Through Integrated Geothermal and Wind Energy Solutions. i-manager’s Journal on Power Systems Engineering, 12(2), 29-36. https://doi.org/10.26634/jps.12.2.21505

References

[3]. Fargali, H. M., Fahmy, F. H., & Hassan, M. A. (2008). A simulation model for predicting the performance of PV/wind-powered geothermal space heating system in Egypt. The Online Journal on Electronics and Electrical Engineering (OJEEE), 2(4), 173-177.
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