Best Researcher Award
Alberto Teyssedou — Polytechnique Montreal, Canada
| Alberto Teyssedou | |
|---|---|
| Affiliation | Polytechnique Montreal |
| Country | Canada |
| Scopus ID | 6602828847 |
| Documents | 75 |
| Citations | 972 |
| h-index | 15 |
| Subject Area | Energy |
| Event | Global Scholar Awards |
Alberto Teyssedou is an energy and nuclear engineering researcher whose documented work addresses thermal hydraulics, supercritical water behavior, multiphase transport, thermodynamic optimization, photovoltaic thermal systems, and industrial waste heat recovery. His scholarly record connects experimental measurements, numerical simulations, and energy system assessment with applications relevant to reactor engineering and efficient energy conversion. [1]
Abstract
Alberto Teyssedou has contributed to energy and nuclear engineering through research on thermal hydraulics, multiphase flow, supercritical water systems, power plant optimization, exergy analysis, and integrated energy technologies. His publication record includes experimental, numerical, and thermodynamic studies addressing heat transfer, critical flow, reactor systems, photovoltaic thermal conversion, and waste heat recovery. At Polytechnique Montreal, his work has also supported graduate research across nuclear and energy engineering. With 75 Scopus indexed documents, 972 citations, and an h-index of 15, his profile reflects sustained scholarly activity connecting fundamental transport phenomena with practical energy system analysis and engineering applications internationally across international contexts. [1]
Keywords
Alberto Teyssedou’s publication-based keywords include thermal hydraulics, nuclear engineering, energy systems, supercritical water, choking flow, multiphase flow, critical heat flux, computational fluid dynamics, CANDU reactors, heat transfer, exergy analysis, photovoltaic thermal systems, thermodynamic optimization, Stirling engines, waste heat recovery, heat exchangers, power plants, energy efficiency, renewable energy, and fluid mechanics. [1]
Introduction
Alberto Teyssedou conducts research at the intersection of energy systems, thermal sciences, and nuclear engineering, with publications spanning experimental fluid mechanics, reactor thermal hydraulics, thermodynamic optimization, and renewable energy analysis. His work frequently combines modeling, numerical simulation, and investigation to evaluate performance, safety, efficiency, and energy conversion processes across technologies. [1]
Research Profile
Alberto Teyssedou is affiliated with Polytechnique Montreal in Canada and is associated with research in energy and nuclear engineering. His Scopus profile reports 75 documents, 972 citations, and an h-index of 15. Institutional publication records show extensive authorship and graduate supervision across thermal hydraulics, energy optimization, and transport phenomena research. [1]
Research Contributions
Alberto Teyssedou has contributed to studies of supercritical water choking flow, CANDU reactor moderator circulation, critical heat flux, multiphase transport, heat exchanger networks, and energy system optimization. Collaborative publications examine photovoltaic thermal systems, exergy methods, Stirling engine waste heat recovery, and thermodynamic cycle modeling, linking efficiency with engineering design decisions. [2] [3]
Publications
Alberto Teyssedou’s publications include research in Nuclear Engineering and Design, Energy and Buildings, Energy Conversion and Management, Solar Energy, Applied Thermal Engineering, and journals. Representative studies address nuclear power plant secondary loop optimization, photovoltaic thermal exergy analysis, supercritical water choking experiments, and recovery of aluminum smelter losses using Stirling engines. [2] [3] [4]
Research Impact
Alberto Teyssedou’s reported Scopus indicators of 972 citations and an h-index of 15 suggest sustained use of his research within scholarly literature. His work reaches multiple energy domains, while institutional records document a broad publication history and graduate supervision, indicating influence through published engineering studies and academic researcher development activities. [1]
Award Suitability
Alberto Teyssedou’s profile is relevant to Best Researcher Award consideration because it demonstrates sustained publication, measurable citation impact, interdisciplinary energy research, and contributions to experimental and computational engineering. Assessment should consider supplied Scopus metrics alongside publication quality, methodological rigor, supervision, collaboration, and alignment with the Global Scholar Awards evaluation framework.
Conclusion
Alberto Teyssedou presents an established research profile centered on energy conversion, thermal hydraulics, nuclear systems, and thermodynamic analysis. His publications combine experimental evidence, simulation, optimization, and system evaluation across conventional, nuclear, and renewable energy applications. Available bibliometric indicators and institutional records support a balanced academic assessment of his research contributions. [1]
External Links
References
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- Elsevier. (n.d.). Scopus author details: Alberto Teyssedou, Author ID 6602828847. Scopus.
https://www.scopus.com/authid/detail.uri?authorId=6602828847 - Saloux, É., Teyssedou, A., & Sorin, M. (2013). Analysis of photovoltaic (PV) and photovoltaic/thermal (PV/T) systems using the exergy method. Energy and Buildings, 67, 275–285. https://doi.org/10.1016/j.enbuild.2013.08.012
- Cascella, F., Gaboury, S., Sorin, M., & Teyssedou, A. (2018). Proof of concept to recover thermal wastes from aluminum electrolysis cells using Stirling engines. Energy Conversion and Management, 172, 497–506. https://doi.org/10.1016/j.enconman.2018.07.048
- Teyssedou, A., Dipama, J., Hounkonnou, W., & Aubé, F. (2010). Modeling and optimization of a nuclear power plant secondary loop. Nuclear Engineering and Design, 240(6), 1403–1416. https://doi.org/10.1016/j.nucengdes.2010.01.019
- Teyssedou, A., Muftuoglu, A., & Hidouche, A. (2021). Supercritical Water Choking Flow Experiments Through a Convergent-Divergent Test Section. Journal of Nuclear Engineering and Radiation Science, 7(3). https://doi.org/10.1115/1.4048009
- Elsevier. (n.d.). Scopus author details: Alberto Teyssedou, Author ID 6602828847. Scopus.
