Using Wind Driven Tumbleweed Rovers to Explore Martian Gully Features.pdf

Using Wind Driven Tumbleweed Rovers to Explore Martian Gully Features.pdf

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Using Wind Driven Tumbleweed Rovers to Explore Martian Gully Features

Using Wind Driven Tumbleweed Rovers to Explore Martian Gully Features Jeffrey Antol*, Stanley E. Woodard? and Gregory A. Hajos? NASA Langley Research Center, Hampton, VA 23681 Jennifer L. Heldmann§ NASA Ames Research Center, Moffett Field, CA 940352 and Bryant D. Taylor** Swales Aerospace Corporation, Hampton, VA 23681 Gully features have been observed on the slopes of numerous Martian crater walls, valleys, pits, and graben. Several mechanisms for gully formation have been proposed, including: liquid water aquifers (shallow and deep), melting ground ice, snow melt, CO2 aquifers, and dry debris flow. Remote sensing observations indicate that the most likely erosional agent is liquid water. Debate concerns the source of this water. Observations favor a liquid water aquifer as the primary candidate. The current strategy in the search for life on Mars is to “follow the water.” A new vehicle known as a Tumbleweed rover may be able to conduct in-situ investigations in the gullies, which are currently inaccessible by conventional rovers. Deriving mobility through use of the surface winds on Mars, Tumbleweed rovers would be lightweight and relatively inexpensive thus allowing multiple rovers to be deployed in a single mission to survey areas for future exploration. NASA Langley Research Center (LaRC) is developing deployable structure Tumbleweed concepts. An extremely lightweight measurement acquisition system and sensors are proposed for the Tumbleweed rover that greatly increases the number of measurements performed while having negligible mass increase. The key to this method is the use of magnetic field response sensors designed as passive inductor-capacitor circuits that produce magnetic field responses whose attributes correspond to values of physical properties for which the sensors measure. The sensors do not need a physical connection to a power source or to data acquisition equipment resulting in additional weight reduction

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