Gabriele Di Pietro
Planetary Sunshade for Solar Geoengineering: Attitude and Orbit Control for solar-sail satellites.
Rel. Paolo Maggiore, Catello Leonardo Matonti, Marina Coco. Politecnico di Torino, Corso di laurea magistrale in Ingegneria Aerospaziale, 2026
|
|
PDF (Tesi_di_laurea)
- Tesi
Accesso limitato a: Solo utenti staff fino al 21 Gennaio 2028 (data di embargo). Licenza: Creative Commons Attribution Non-commercial No Derivatives. Download (77MB) |
Abstract
Space-based Solar Radiation Management approaches represent proposed technological solutions to actively mitigate one of the most significant challenges of the contemporary era: anthropogenic climate change. The increase in global average temperatures threatens natural ecosystems and societal security, demanding a global effort to counteract its effects. Decarbonization strategies alone may not be sufficient. The deployment of Space-based Solar Geoengineering concepts, aimed at reducing the solar radiation incident on Earth and influencing its energy balance, may represent an effective adaptation strategy to contain global warming. In this way, average temperatures could be maintained within safe limits while providing additional time for long-term decarbonization solutions to reverse greenhouse gas accumulation in the atmosphere.
Among emerging Space-based Solar Geoengineering proposals is the Planetary Sunshade System (PSS), a large-scale architecture based on the Space Mirror concept
Relatori
Anno Accademico
Tipo di pubblicazione
Numero di pagine
Corso di laurea
Classe di laurea
Aziende collaboratrici
URI
![]() |
Modifica (riservato agli operatori) |
