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Development of the variable atmosphere testing facility for blow-down analysis of the mars hopper prototype

  • Nathan D. Jerred
  • , Robert C. O'Brien
  • , Steven D. Howe
  • , James E. O'Brien
  • , Robert O'Brien

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Recent developments at the Center for Space Nuclear Research (CSNR) on a Martian exploration probe have lead to the assembly of a multi-functional variable atmosphere testing facility (VATF). The VATF has been assembled to perform transient blow-down analysis of a radioisotope thermal rocket (RTR) concept that has been proposed for the Mars Hopper; a long-lived, long-ranged mobile platform for the Martian surface. This study discusses the current state of the VATF as well as recent blow-down testing performed on a laboratory-scale prototype of the Mars Hopper. The VATF allows for the simulation of Mars ambient conditions within the pressure vessel as well as to safely perform blow-down tests through the prototype using CO2 gas; the proposed propellant for the Mars Hopper. Empirical data gathered will lead to a better understanding of CO2 behavior and will provide validation of simulation models. Additionally, the potential of the VATF to test varying propulsion system designs has been recognized. In addition to being able to simulate varying atmospheres and blow-down gases for the RTR, it can be fitted to perform high temperature hydrogen testing of fuel elements for nuclear thermal propulsion.

Original languageEnglish
Title of host publicationNuclear and Emerging Technologies for Space, NETS 2013
Pages527-533
Number of pages7
StatePublished - 2013
EventNuclear and Emerging Technologies for Space, NETS 2013 - Albuquerque, NM, United States
Duration: Feb 25 2013Feb 28 2013

Publication series

NameNuclear and Emerging Technologies for Space, NETS 2013

Conference

ConferenceNuclear and Emerging Technologies for Space, NETS 2013
Country/TerritoryUnited States
CityAlbuquerque, NM
Period02/25/1302/28/13

Keywords

  • Mars Hopper
  • Radioisotope thermal rocket
  • Tungsten cermet

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