Sanders et al., 2011 - Google Patents
Integration of in-situ resource utilization into lunar/Mars exploration through field analogsSanders et al., 2011
View PDF- Document ID
- 6748001403700541627
- Author
- Sanders G
- Larson W
- Publication year
- Publication venue
- Advances in Space Research
External Links
Snippet
The ability to extract and process resources at the site of exploration into useful products such as propellants, life support and power system consumables, and radiation and rocket exhaust plume debris shielding, known as In-Situ Resource Utilization or ISRU, has the …
- 238000011065 in-situ storage 0 title abstract description 19
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B64—AIRCRAFT; AVIATION; COSMONAUTICS
- B64G—COSMONAUTICS; VEHICLES OR EQUIPMENT THEREFOR
- B64G1/00—Cosmonautic vehicles
- B64G1/22—Parts of, or equipment specially adapted for fitting in or to, cosmonautic vehicles
- B64G1/40—Arrangements or adaptations of propulsion systems
- B64G1/402—Propellant tanks; Feeding propellants
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B64—AIRCRAFT; AVIATION; COSMONAUTICS
- B64G—COSMONAUTICS; VEHICLES OR EQUIPMENT THEREFOR
- B64G1/00—Cosmonautic vehicles
- B64G1/22—Parts of, or equipment specially adapted for fitting in or to, cosmonautic vehicles
- B64G1/24—Guiding or controlling apparatus, e.g. for attitude control
- B64G1/242—Orbits and trajectories
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Sanders et al. | Integration of in-situ resource utilization into lunar/Mars exploration through field analogs | |
Sanders et al. | Progress made in lunar in situ resource utilization under NASA’s exploration technology and development program | |
Sherwood | Principles for a practical Moon base | |
Sanders et al. | Final review of analog field campaigns for In Situ Resource Utilization technology and capability maturation | |
Pelech et al. | Technical evaluation of Off-Earth ice mining scenarios through an opportunity cost approach | |
Sacksteder et al. | In-situ resource utilization for lunar and mars exploration | |
Kessler et al. | Artemis deep space habitation: enabling a sustained human presence on the moon and beyond | |
Sanders et al. | NASA in-situ resource utilization (ISRU) project: Development and implementation | |
Kawakatsu et al. | Preliminary design of Martian Moons eXploration (MMX) | |
Colvin et al. | Assessing the economics of asteroid-derived water for propellant | |
Liever et al. | Gas-granular simulation framework for spacecraft landing plume-surface interaction and debris transport analysis | |
Andrews | Resource prospector (rp)-early prototyping and development | |
Sanders et al. | In situ resource utilization (ISRU) envisioned future priorities | |
Mueller et al. | Opportunities and strategies for testing and infusion of ISRU in the evolvable mars campaign | |
Sanders | Current NASA plans for mars in situ resource utilization | |
Sanders et al. | Results from the NASA capability roadmap team for in-situ resource utilization (ISRU) | |
Sanders | Comparison of lunar and Mars in-situ resource utilization for future robotic and human missions | |
Thangavelu | Planet moon: the future of astronaut activity and settlement | |
Williams et al. | Mars reconnaissance lander: vehicle and mission design | |
Mueller | A Review of Extra-Terrestrial Regolith Excavation Concepts and Prototypes | |
Roman et al. | Overview of nasa’s break the ice lunar challenge | |
Larson et al. | ISRU-From Concept to Reality: NASA Accomplishments and Future Plans | |
Kennedy et al. | NASA Technology Area 07 Human Exploration Destination Systems Roadmap | |
Just | Investigation and development of regolith excavation and handling mechanisms for lunar in-situ resource utilisation | |
Sanders et al. | Lunar in-situ resource utilization in the ISECG human lunar exploration reference architecture |