PLANETARY-ENERGY-SYSTEMS-PTY-LTD
214 posts

PLANETARY-ENERGY-SYSTEMS-PTY-LTD
@planetaryengsys
Australian deep-tech R&D | Lunar/Mars energy & habitat systems | ISRU innovation | https://t.co/pkAy6yM8JJ








🚀 HEXSHIELD: A Mars habitat architecture that uses water ice as a structural radiation shield. Instead of relying on thin transparent domes, HexShield uses deep honeycomb cells filled with ice, creating modular structures that provide radiation protection, thermal insulation, micrometeoroid resistance, and natural daylight. The concept scales from small research outposts and habitat connectors to logistics hubs, maintenance facilities, transportation terminals, industrial structures, and large settlement domes. By treating water as both a life-support resource and a building material, future Martian settlements could become safer, larger, and more practical than traditional habitat concepts. 📄 White Paper: doi.org/10.5281/zenodo… #Mars #Space #MarsColony #SpaceArchitecture #MarsBase #HumanSpaceflight #Engineering #FutureCities #SpaceSettlement

🚀 HEXSHIELD: A Mars habitat architecture that uses water ice as a structural radiation shield. Instead of relying on thin transparent domes, HexShield uses deep honeycomb cells filled with ice, creating modular structures that provide radiation protection, thermal insulation, micrometeoroid resistance, and natural daylight. The concept scales from small research outposts and habitat connectors to logistics hubs, maintenance facilities, transportation terminals, industrial structures, and large settlement domes. By treating water as both a life-support resource and a building material, future Martian settlements could become safer, larger, and more practical than traditional habitat concepts. 📄 White Paper: doi.org/10.5281/zenodo… #Mars #Space #MarsColony #SpaceArchitecture #MarsBase #HumanSpaceflight #Engineering #FutureCities #SpaceSettlement






🚀 HEXSHIELD: A Mars habitat architecture that uses water ice as a structural radiation shield. Instead of relying on thin transparent domes, HexShield uses deep honeycomb cells filled with ice, creating modular structures that provide radiation protection, thermal insulation, micrometeoroid resistance, and natural daylight. The concept scales from small research outposts and habitat connectors to logistics hubs, maintenance facilities, transportation terminals, industrial structures, and large settlement domes. By treating water as both a life-support resource and a building material, future Martian settlements could become safer, larger, and more practical than traditional habitat concepts. 📄 White Paper: doi.org/10.5281/zenodo… #Mars #Space #MarsColony #SpaceArchitecture #MarsBase #HumanSpaceflight #Engineering #FutureCities #SpaceSettlement



🚀 HEXSHIELD: A Mars habitat architecture that uses water ice as a structural radiation shield. Instead of relying on thin transparent domes, HexShield uses deep honeycomb cells filled with ice, creating modular structures that provide radiation protection, thermal insulation, micrometeoroid resistance, and natural daylight. The concept scales from small research outposts and habitat connectors to logistics hubs, maintenance facilities, transportation terminals, industrial structures, and large settlement domes. By treating water as both a life-support resource and a building material, future Martian settlements could become safer, larger, and more practical than traditional habitat concepts. 📄 White Paper: doi.org/10.5281/zenodo… #Mars #Space #MarsColony #SpaceArchitecture #MarsBase #HumanSpaceflight #Engineering #FutureCities #SpaceSettlement



🚀 HEXSHIELD: A Mars habitat architecture that uses water ice as a structural radiation shield. Instead of relying on thin transparent domes, HexShield uses deep honeycomb cells filled with ice, creating modular structures that provide radiation protection, thermal insulation, micrometeoroid resistance, and natural daylight. The concept scales from small research outposts and habitat connectors to logistics hubs, maintenance facilities, transportation terminals, industrial structures, and large settlement domes. By treating water as both a life-support resource and a building material, future Martian settlements could become safer, larger, and more practical than traditional habitat concepts. 📄 White Paper: doi.org/10.5281/zenodo… #Mars #Space #MarsColony #SpaceArchitecture #MarsBase #HumanSpaceflight #Engineering #FutureCities #SpaceSettlement















🚀 CRAGSA-PG v1.1 is now live on Zenodo! Building on the orbital Counter-Rotating Artificial-Gravity Sleep Array (CRAGSA v2.1), this new public disclosure explores subsurface rotating sleep habitats for lunar and Martian settlements. CRAGSA-PG combines natural partial gravity (0.165 g on the Moon, 0.38 g on Mars) with controlled centrifugal acceleration during sleep. Horizontal rotors in protected underground chambers create a banked resultant gravity vector aligned with the sleeper — all while keeping the main settlement stationary. Key ideas: • Banked sleep pods/cradles aligned to combined gravity • Subsurface & regolith-shielded construction • Optional counter-rotation for reduced vibration • Flexible programmes from moderate overnight exposure to higher-load rehabilitation • Strong focus on human factors, safety, and staged development Full 52-page technical disclosure (v1.1) is now permanently available under CC BY 4.0 as open prior art: doi.org/10.5281/zenodo… Designed to support long-term human health research and settlement infrastructure — freely available for humanity to study, simulate, and build upon. Feedback and collaboration welcome from engineers, researchers, and the space community! #ArtificialGravity #LunarSettlement #MarsSettlement #SpaceHabitat #OpenScience #Zenodo

🚀 CRAGSA-PG v1.1 is now live on Zenodo! Building on the orbital Counter-Rotating Artificial-Gravity Sleep Array (CRAGSA v2.1), this new public disclosure explores subsurface rotating sleep habitats for lunar and Martian settlements. CRAGSA-PG combines natural partial gravity (0.165 g on the Moon, 0.38 g on Mars) with controlled centrifugal acceleration during sleep. Horizontal rotors in protected underground chambers create a banked resultant gravity vector aligned with the sleeper — all while keeping the main settlement stationary. Key ideas: • Banked sleep pods/cradles aligned to combined gravity • Subsurface & regolith-shielded construction • Optional counter-rotation for reduced vibration • Flexible programmes from moderate overnight exposure to higher-load rehabilitation • Strong focus on human factors, safety, and staged development Full 52-page technical disclosure (v1.1) is now permanently available under CC BY 4.0 as open prior art: doi.org/10.5281/zenodo… Designed to support long-term human health research and settlement infrastructure — freely available for humanity to study, simulate, and build upon. Feedback and collaboration welcome from engineers, researchers, and the space community! #ArtificialGravity #LunarSettlement #MarsSettlement #SpaceHabitat #OpenScience #Zenodo



