Exploring Electrostatic Regolith Interactions in Low-gravity
PI: Adrienne Dove, Josh Colwell (Co-I), University of Central Florida
PI: Adrienne Dove, Josh Colwell (Co-I), University of Central Florida
- TA06 Human Health, Life Support and Habitation Systems
- TA07 Human Exploration Destination Systems
Not only may lunar dust grains already have an electrostatic charge, they also may experience a charge exchange during any rolling or sliding interactions. Therefore, it is relevant to understand dusty surfaces for robotic and human lunar surface mobility, landing and plume effects, in-situ resource utilization (ISRU), and basic science applications. This technology combines dust motion chambers, regolith simulant, and tribocharging sensors. In this experiment, researchers will validate the hardware in a vacuum and low gravity and then compare with ground test data.
Few models correctly predict lunar surface charging and the resulting particle dynamics. This technology will advance from TRL 4 to 7 upon a successful demonstration.
Lunar exploration
ISRU
Planetary science
Technology Details
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Selection DateTechFlights19 (Oct 2019)
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Program StatusActive
- 0 sRLV
Development Team
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PIAdrienne Dove
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PI Organization
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Co-IJosh Colwell
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Co-I Organization
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SponsorNASA