This thesis focuses on the projects commissioned by ESA for the development of a Regenerative Fuel Cell System as an alternative to rechargeable lion batteries for geostationary satellites and stratospheric drones (HAPS) with massive payloads, as a part of the TRP and ARTES 5 programs. The thesis describes the operations performed by a RFCS in its entirety and of its sub-parts, with a focus on the materials involved, the difficulties encountered by the different contractor companies and the consequent advancement of the state of the art.
La presente tesi è basata sui progetti commissionati dall’ESA per lo sviluppo di un Regenerative Fuel Cell System come alternativa alle batterie agli ioni di litio ricaricabili per satelliti geostazionari e droni stratosferici (HAPS) forniti di grossi payload, come parte dei programmi di ricerca TRP e ARTES 5. La tesi descrive il funzionamento di un RFCS nel suo insieme e le sue sotto parti, con un focus specifico sui materiali utilizzati, le difficoltà incontrate dalle varie aziende coinvolte ed il successivo avanzamento dello stato dell’arte
MATERIALI IN UN REGENERATIVE FUEL CELL SYSTEM
POLESE, STEFANO
2021/2022
Abstract
This thesis focuses on the projects commissioned by ESA for the development of a Regenerative Fuel Cell System as an alternative to rechargeable lion batteries for geostationary satellites and stratospheric drones (HAPS) with massive payloads, as a part of the TRP and ARTES 5 programs. The thesis describes the operations performed by a RFCS in its entirety and of its sub-parts, with a focus on the materials involved, the difficulties encountered by the different contractor companies and the consequent advancement of the state of the art.File | Dimensione | Formato | |
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https://hdl.handle.net/20.500.12608/39168