Thermoelectric Energy Harvesting from Geothermal Micro-Seepage
Authors: Nitiraj V. Kulkarni, Al-Dossari, M., Tawade, J.V., Alqahtani, A., Khan, M.I., Abdullaeva, B., Waqas, M., & Khedher, N.B.
Year:
Venue: International Journal of Hydrogen Energy — Vol 93, Pages 925–936
Publisher: Elsevier
Type: journal (published)
Abstract
Explores the feasibility of thermoelectric energy harvesting from geothermal micro-seepage sites, analyzing thermal gradients and energy conversion potential.
This work intersects with research areas including thermoelectric, energy harvesting, geothermal, micro-seepage, renewable energy, heat transfer, sustainability, and hydrogen energy. It is part of the broader research portfolio of Nitiraj V. Kulkarni in the domain of peer-reviewed academic publishing.
Keywords & Topics
thermoelectric, energy harvesting, geothermal, micro-seepage, renewable energy, heat transfer, sustainability, hydrogen energy
How to Cite
APA
Nitiraj V. Kulkarni, Al-Dossari, M., Tawade, J.V., Alqahtani, A., Khan, M.I., Abdullaeva, B., Waqas, M., & Khedher, N.B. (2024). Thermoelectric Energy Harvesting from Geothermal Micro-Seepage. International Journal of Hydrogen Energy, Vol 93, Pages 925–936. Elsevier.
IEEE
Nitiraj V. Kulkarni, Al-Dossari, M., Tawade, J.V., Alqahtani, A., Khan, M.I., Abdullaeva, B., Waqas, M., & Khedher, N.B., "Thermoelectric Energy Harvesting from Geothermal Micro-Seepage," International Journal of Hydrogen Energy, Vol 93, Pages 925–936, 2024.
BibTeX
@article{2024_thermoelectric_energy_geothermal_micro_seepage,
title={Thermoelectric Energy Harvesting from Geothermal Micro-Seepage},
author={Nitiraj V. Kulkarni, Al-Dossari, M., Tawade, J.V., Alqahtani, A., Khan, M.I., Abdullaeva, B., Waqas, M., & Khedher, N.B.},
journal={International Journal of Hydrogen Energy},
year={2024},
publisher={Elsevier}
}Identifiers & Links
Publisher link: https://www.sciencedirect.com
Last updated: 2024-12-01
Related Publications
- Sustainability and Feasibility of Low-Grade Heat Utilization for Thermoelectric Systems in Geothermal Micro-Seepages — Energy Reports, 2025
- Effects of Exponentially Stretching Sheet for MHD Williamson Nanofluid with Chemical Reaction and Thermal Radiative — Partial Differential Equations in Applied Mathematics, 2024
- Numerical Solutions for Unsteady Laminar Boundary Layer Flow and Heat Transfer over a Horizontal Sheet with Radiation and Nonuniform Heat Source/Sink — Journal of Radiation Research and Applied Sciences, 2024
- Heat Transfer Mechanism for Newtonian and Non-Newtonian Casson Hybrid Nanofluid Subject to Thermophoresis and Brownian Motion over a Movable Wedge Surface — Multiscale and Multidisciplinary Modeling, Experiments and Design, 2025
- Effect of Williamson Nanofluid Across an Exponentially Stretched Sheet with Chemical Reaction Under the Influence of Joule Heating — International Journal of Applied and Computational Mathematics, 2025
- Optimizing Nanoparticle Dispersion and Heat Transfer in Williamson Nanofluids Under Magnetic Influence — Pending, 2025
About the Author
Nitiraj V. Kulkarni is an AI safety and cybersecurity researcher based in Pune, India, with 35+ peer-reviewed publications, 5 patents, 6 copyright registrations, and 15,000+ open datasets published on Kaggle and Zenodo. He serves as a peer reviewer for 11+ international journals and conferences. Read full profile.