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Enhancing the efficiency of the dehydration process in systems powered by renewable energy sources

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dc.contributor.author GÎDEI, Igor
dc.contributor.author VIŞANU, Vitali
dc.contributor.author BALAN, Tatiana
dc.contributor.author POPESCU, Victor
dc.contributor.author BALAN, Mihail
dc.date.accessioned 2026-09-09T07:52:54Z
dc.date.available 2026-09-09T07:52:54Z
dc.date.issued 2026
dc.identifier.citation GÎDEI, Igor; Vitali VIŞANU; Tatiana BALAN; Victor POPESCU and Mihail BALAN. Enhancing the efficiency of the dehydration process in systems powered by renewable energy sources. In: The 21th International Conference of Constructive Design and Technological Optimization in Machine Building Field: Conference Proceedings Abstracts. OPROTEH 2026, Bacău, România, 20-22 may, 2026. Bacău: Alma Mater, 2026, p. 63. ISSN 2457 - 3388. en_US
dc.identifier.issn 2457 - 3388
dc.identifier.uri https://repository.utm.md/handle/5014/37061
dc.description.abstract This study addresses the optimization of dehydration processes for fruits and vegetables using installations integrated with renewable energy sources (RES). Given the high energy sensitivity of food preservation, the research aims to minimize thermal losses and maximize the use of solar and biomass energy. To achieve these objectives, a multi-disciplinary modeling approach was adopted. The mechanical components and the airflow dynamics within the drying chamber were designed and visualized using SolidWorks, ensuring an optimal structural configuration for uniform heat distribution. Furthermore, the thermodynamic behavior of the system and the kinetics of water removal were modeled in MATLAB, allowing for the precise determination of drying curves. To validate the experimental results, thermal and fluidflow simulations were performed in ANSYS, identifying areas of thermal stagnation and optimizing the convective heat transfer coefficient. The results indicate that the integration of these digital twins into the design phase allows for an increase in energy efficiency of approximately 18-22% and a significant reduction in drying time. This integrated approach proves that combining renewable energy with advanced numerical simulation is essential for modern, sustainable, and high-quality food processing. Acknowledgments: Institutional Project 020405 “Optimizing food processing technologies in the context of the circular bioeconomy and climate change”, Bio-OpTehPAS, being implemented at the Technical University of Moldova. en_US
dc.language.iso en en_US
dc.publisher “Vasile Alecsandri” University of Bacau en_US
dc.rights Attribution-NonCommercial-NoDerivs 3.0 United States *
dc.rights.uri http://creativecommons.org/licenses/by-nc-nd/3.0/us/ *
dc.subject dehydration en_US
dc.subject solar drying en_US
dc.subject Matlab modeling en_US
dc.subject renewable energy en_US
dc.subject energy efficiency en_US
dc.title Enhancing the efficiency of the dehydration process in systems powered by renewable energy sources en_US
dc.type Article en_US


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