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Adaptive air solar collector with integrated nano-enhanced phase changing materials
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PN-III-P2-2.1-PED-2021-1903
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The experimental and innovative solar energy collector system integrated into the ventilated façades of buildings, playing a significant role in the air conditioning and ventilation of living spaces. The main features and benefits of the system include:
Preheating of Fresh Air in Cold Seasons: During daytime in colder seasons, outdoor air is preheated as it passes through perforated plates. This process is augmented by phase change materials enhanced with nanomaterials (nePCM), which store excess heat. Consequently, the warm air is directed indoors, ensuring the fresh air.
Minimization of Heat Loss During Nighttime: The retractable thermal insulation system is automatically extended at night during the cold season to reduce heat loss to the exterior. This allows only the fresh outdoor air to be heated, optimizing energy efficiency.
Introduction of Pre-warmed Fresh Air at Night in Warm Seasons: Depending on needs, pre-warmed fresh air is introduced indoors at night during the warm season. The retractable thermal insulation system is complemented by a thermal insulating structure made from high energy efficiency sandwich panels.
Through the replacement or reducing of the main air pollutants within living spaces, this system ensures occupants' comfort and health while following the strict fresh air ventilation regulations of the European Union. It is an example of a cutting-edge approach to benefiting from environmental conditions consistently.
Dr. Ing. Razvan Calota (Project Director) - https://www.brainmap.ro/razvan-calota
Dr. Ing. Nastase Ilinca - https://www.brainmap.ro/nastase-ilinca
Dr. Ing. Florin Bode - https://www.brainmap.ro/florin-ioan-bode
Dr. Ing. Larisa Madalina Melita - https://www.brainmap.ro/larisa-madalina-melita
Dr. Ing. Andrada Serafim - https://www.brainmap.ro/andrada-serafim
Dr. Ing. Octavian-Gabriel Pop - https://www.brainmap.ro/public-profile-82895086
Dr. Ing. Charles Berville - https://www.brainmap.ro/charles-berville
Dr. Ing. Cristiana Verona Croitoru - https://www.brainmap.ro/cristiana-verona-croitoru
Dr. Ing. Daniel Vasile Banyai - https://www.brainmap.ro/daniel-vasile-banyai
Dr. Ing. Sandu Mihnea - https://www.brainmap.ro/mihnea-sandu
Scientific Papers
2022 Scientific Activity
Teodosiu, C.I.; Sima, C.; Croitoru, C.; Bode, F. Experimental Investigation and Optimization of a Glazed Transpired Solar Collector. Appl. Sci. 2022, 12, 11392. https://doi.org/10.3390/app122211392
2023 Scientific Activity
Berville C, Bode F, Croitoru C, Calota R, Nastase I. Enhancing solar façade thermal performance with PCM spheres: A CFD investigation. Journal of Building Physics. 2023;0(0). doi:10.1177/17442591231204360, FI:2 (published)
Răzvan Calotă, Larisa Meliță, Cristiana Croitoru, Analysis of advanced thermal insulation alternatives for a solar collector with PCM and nanomaterials, A 58 – a CONFERINŢĂ NAȚIONALĂ DE INSTALAŢII, 11 - 13 octombrie 2023 BRAȘOV – ROMÂNIA
Bode, F.; Simion, A.; Anghel, I.; Sandu, M.; Banyai, D. Enhancing Fire Safety: Real-Scale Experimental Analysis of External Thermal Insulation Composite System Façades’ Behavior in Fire. Fire 2023, 6, 451. https://doi.org/10.3390/fire6120451; FI:3.2 (published)
2024 Scientific Activity
Calotă R., Meliță L., Croitoru C. Analysis of advanced thermal insulation alternatives for a solar collector with PCM and nanomaterials, Revista Română de Inginerie Civilă, 133
Croitoru C., Bode F., Calotă R., Berville C., Georgescu M. Harnessing Nanomaterials for Enhanced Energy Efficiency in Transpired Solar Collectors: A Review of Their Integration in Phase-Change Materials, Energies 17 (5), 1239. https://doi.org/10.3390/en17051239 FI:3.2
Razvan CALOTA - razvan.calota@utcb.ro
Address: Faculty of Building Services, Bd. Pache Protopopescu, No. 66, S2, Bucharest, Romania