2011•Unpublished venueOpen access

Mars ascent vehicle gross lift-off mass sensitivities for robotic Mars sample return

Ian J. Dux, Joseph A. Huwaldt, R. MCKAMEY, John Dankanich

Open full text 9 citations

Abstract

The Mars ascent vehicle is a critical element of the robotic Mars sample return mission jointly planned by NASA and ESA. The Mars ascent vehicle must be developed to survive a variety of conditions including the trans-Mars journey, descent through the Martian atmosphere and the harsh Martian surface environments while maintaining the ability to deliver its payload to a low Mars orbit. The primary technology challenge of developing the Mars ascent vehicle system is designing for expected conditions while ensuring the mass limitations of the entry descent and landing system are not exceeded. The NASA In-Space Propulsion technology project has initiated the development of Mars ascent vehicle technologies with propulsion system performance and launch environments yet to be defined. To support the project's evaluation and development of various technology options the sensitivity of the Mars ascent vehicle gross liftoff mass to engine performance, inert mass, target orbits and launch conditions has been completed with the results presented herein.

Open-access reader

About this research paper

What this paper is about

The Mars ascent vehicle is a critical element of the robotic Mars sample return mission jointly planned by NASA and ESA. The Mars ascent vehicle must be developed to survive a variety of conditions including the trans-Mars journey, descent through the Martian atmosphere and the harsh Martian surface environments while maintaining the ability to deliver its payload to a low Mars orbit. The primary technology challenge of developing the Mars ascent vehicle system is designing for expected conditions while ensuring the mass limitations of the entry descent and landing system are not exceeded. The NASA In-Space Propulsion technology project has initiated the development of Mars ascent vehicle technologies with propulsion system performance and launch environments yet to be defined. To support the project's evaluation and development of various technology options the sensitivity of the Mars ascent vehicle gross liftoff mass to engine performance, inert mass, target orbits and launch conditions has been completed with the results presented herein.

Why it matters

OpenAlex reports 9 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The Mars ascent vehicle is a critical element of the robotic Mars sample return mission jointly planned by NASA and ESA. The Mars ascent vehicle must be developed to survive a variety of conditions including the trans-Mars journey, descent through the Martian atmosphere and the harsh Martian surface environments while maintaining the ability to deliver its payload to a low Mars orbit. The primary technology challenge of developing the Mars ascent vehicle system is designing for expected conditions while ensuring the mass limitations of the entry descent and landing system are not exceeded. The NASA In-Space Propulsion technology project has initiated the development of Mars ascent vehicle technologies with propulsion system performance and launch environments yet to be defined. To support the project's evaluation and development of various technology options the sensitivity of the Mars ascent vehicle gross liftoff mass to engine performance, inert mass, target orbits and launch conditions has been completed with the results presented herein.

Key concepts: Mars Exploration Program, Exploration of Mars, Aerospace engineering, Propulsion, Payload (computing), Martian, Mars landing, Atmosphere of Mars

Related papers

Back to paper searchBrowse research topicsOriginal source
Mars ascent vehicle gross lift-off mass sensitivities for robotic Mars sample return — Research Paper | ScholarLens