Prof. D. Yogi
Goswami
Clean Energy
Research Center
University of South
Florida, USA
Email: [email protected]
Qualifications
1975 Ph.D., Auburn
University, Auburn, AlabamaMechanical Engineering
1971 M.Sc., Auburn
University, Auburn, AlabamaMechanical Engineering
1969 B.Sc.,
University of Delhi, Delhi, IndiaMechanical Engineering
Publications (Selected)
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Maity, K., Bhadirke, S. D., Wijewardane, S., & Goswami, D. Y. (2025). CO2 capture from indoor air for human comfort and sequestration or reuse: a promising step toward sustainable CO2 removal. Frontiers in Nanotechnology, 7, 1525106.
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Adua, L., Asamoah, A., Barrows, J., Brookstein, P., Chen, B., Coleman, D. R., ... & Walker, A. (2024). Ambient energy for buildings: beyond energy efficiency. Solar Compass, 11, 100076.
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Goswami, D. Y., & Goswami, D. N. (2023). U.S. Patent No. 11,844,966. Washington, DC: U.S. Patent and Trademark Office.
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Goswami, D. Y. (2022). Decarbonizing industrial process heat is essential to achieving net-zero goal. Solar Compass, 3, 100028.
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Young, D. A., Stefanakos, E., & Goswami, D. Y. (2022). A Review of Passive cooling technology performance testing methods. Energy Sustainability, 85772, V001T02A003.
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Almatrafi, E., Moloney, F., & Goswami, D. Y. (2018, June). Performance analysis of solar thermal powered supercritical organic rankine cycle assisted low-temperature multi effect desalination coupled with mechanical vapor compression. In ASME Power Conference (Vol. 51401, p. V002T11A002). American Society of Mechanical Engineers.
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Han, Z., Wickramaratne, C., Goswami, D. Y., & Jotshi, C. (2022). Experimental study on operating characteristics of nitrate salt-based latent heat thermal energy storage unit. Applied Thermal Engineering, 202, 117846.
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Han, Z., Wickramaratne, C., Goswami, D. Y., & Jotshi, C. (2022). Experimental study on operating characteristics of nitrate salt-based latent heat thermal energy storage unit. Applied Thermal Engineering, 202, 117846.
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Osterman, K., & Goswami, D. Y. (2021). Effect of PCM fraction and melting temperature on temperature stabilization of hybrid sensible/latent thermal energy storage system for sCO2 Brayton power cycle. Energy Conversion and Management, 237, 114024.
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Betancourt, A. P., Goswami, D. Y., Bhethanabotla, V. R., & Kuhn, J. N. (2021). Scalable and stable silica-coated silver nanoparticles, produced by electron beam evaporation and rapid thermal annealing, for plasmon-enhanced photocatalysis. Catalysis Communications, 149, 106213.
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Young, D. A., Wijewardane, S., Stefanakos, E., & Goswami, D. Y. (2021). Passive radiative cooling of structures with thick film nanocomposites. In Proceedings of the ISES Solar World Congress (pp. 1146-1156).
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Kaushik, A. K., Dhau, J. S., Gohel, H., Mishra, Y. K., Kateb, B., Kim, N. Y., & Goswami, D. Y. (2020). Electrochemical SARS-CoV-2 sensing at point-of-care and artificial intelligence for intelligent COVID-19 management. ACS Applied Bio Materials, 3(11), 7306-7325.
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Rao, N. G., Kumar, A., Colon, C., & Goswami, D. Y. (2020). Impact of a new portable air purification technology device in the pediatric hospital setting–a pre-post assessment study. Cureus, 12(3).
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Moloney, F., Almatrafi, E., & Goswami, D. Y. (2017). Working fluid parametric analysis for regenerative supercritical organic Rankine cycles for medium geothermal reservoir temperatures. Energy Procedia, 129, 599-606.
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Narasimhan, A. K., Wickramaratne, C., Kamal, R., Goswami, D. Y., & Singh, P. (2019). Mapping scroll expander performance for organic working fluids using dimensionless parameters in Ns-Ds diagram. Energy, 182, 739-752.
Profile Details
https://www.usf.edu/engineering/chbme/people/goswami.aspx
https://en.wikipedia.org/wiki/Dharendra_Yogi_Goswami
https://scholar.google.com/citations?user=6WJTGpoAAAAJ&hl=en