The thesis examines the cooling of electrical transformers, analysing the various types of heat exchangers employed to ensure effective heat dissipation and maintain optimal operating temperatures. Special attention is given to both traditional and innovative solutions, including oil, air, and hybrid cooling, and their performance is compared in relation to factors such as energy efficiency, operational costs, and environmental impacts. The work aims to provide an overview of best practices and technological solutions for transformer cooling, offering guidelines for optimising performance in industrial contexts and enhancing the durability of systems, while maintaining a balance between sustainability and system reliability.
La tesi esamina il raffreddamento dei trasformatori elettrici, analizzando le diverse tipologie di scambiatori di calore utilizzati per garantire un'efficace dissipazione del calore e il mantenimento delle temperature operative ottimali. Particolare attenzione è stata rivolta alle soluzioni tradizionali e innovative, come il raffreddamento ad olio, ad aria e ibrido, confrontando le prestazioni in relazione a fattori quali efficienza energetica, costi operativi e impatti ambientali. L’obiettivo del lavoro è fornire una panoramica sulle migliori pratiche e soluzioni tecnologiche per il raffreddamento dei trasformatori, proponendo linee guida per ottimizzare le performance in contesti industriali e la durabilità degli impianti, mantenendo un equilibrio tra sostenibilità e affidabilità del sistema.
Il raffreddamento dei trasformatori: tipologia di scambiatore di calore
CASET, RICCARDO
2025/2026
Abstract
The thesis examines the cooling of electrical transformers, analysing the various types of heat exchangers employed to ensure effective heat dissipation and maintain optimal operating temperatures. Special attention is given to both traditional and innovative solutions, including oil, air, and hybrid cooling, and their performance is compared in relation to factors such as energy efficiency, operational costs, and environmental impacts. The work aims to provide an overview of best practices and technological solutions for transformer cooling, offering guidelines for optimising performance in industrial contexts and enhancing the durability of systems, while maintaining a balance between sustainability and system reliability.| File | Dimensione | Formato | |
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Caset_Riccardo.pdf
Accesso riservato
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1.09 MB
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1.09 MB | Adobe PDF |
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https://hdl.handle.net/20.500.12608/104924