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Wave Rotor Enhanced Nuclear (WREN) Propulsion: NASA Innovative Advanced Concepts (NIAC) - Phase I Final ReportNuclear Thermal Propulsion (NTP) is identified as one of the preferred propulsion technologies for manned missions throughout the solar system (NASA MSFC).[1, 2] The state-ofthe-art NTP cycle is based on a solid core Nuclear Engine for Rocket Vehicle Application (NERVA)[3] class technology (Fig. 1) that is envisioned to provide a specific impulse of 900 seconds doubling chemical rocket performance (450 seconds). Even with this impressive increase, the NTP NERVA designs still have issues providing adequate initial to final mass fractions for high ΔV missions.[4] Nuclear Electric Propulsion (NEP) can provide extremely high Isp (2,000 to over 10,000 seconds) but with only low thrust and limits on mass to power ratios. The need for an electric power source also adds the issue of heat rejection in space where thermal energy conversion is at best 30-40% under ideal conditions. NASA Space Technology Mission Directorate (STMD) has recently expressed interest in finding advanced nuclear propulsion technology through the NASA Go:Thrust RFI.[5, 6] A novel Wave Rotor (WR) topping cycle has been proposed for our NASA NIAC concept. It promises to deliver similar thrust as NERVA class NTP propulsion, but with Isp in the 1,200-2,000 second range. Coupled with an NEP cycle, the duty cycle Isp can further be increased (1,800-4,000 seconds) with minimal addition of dry mass. This bimodal design enables fast transit trajectories for manned missions to Mars and revolutionizes the deep space exploration of our solar system.
Document ID
20260003811
Acquisition Source
Headquarters
Document Type
Contractor or Grantee Report
Authors
Ryan Gosse
(University of Florida Gainesville, United States)
Subrata Roy
(University of Florida Gainesville, United States)
Micheal Tonks
(University of Florida Gainesville, United States)
Justin Watson
(University of Florida Gainesville, United States)
Garrison Osborne
(University of Florida Gainesville, United States)
Haris Mahmood
(University of Florida Gainesville, United States)
Sarah K Burrows
(University of Florida Gainesville, United States)
Vishal Yadav
(University of Florida Gainesville, United States)
Jeremy Smith
(University of Florida Gainesville, United States)
Tyler Mark
(University of Florida Gainesville, United States)
Jack Curley
(University of Florida Gainesville, United States)
Anthony J Colozza
(HX5 (United States) Fort Walton Beach, Florida, United States)
Date Acquired
May 4, 2026
Publication Date
February 16, 2024
Subject Category
Spacecraft Propulsion and Power
Funding Number(s)
CONTRACT_GRANT: 80GRC020D0003
CONTRACT_GRANT: 80NSSC23K0589
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
NASA Peer Committee
Keywords
Nuclear Thermal Propulsion
Nuclear Engine for Rocket Vehicle
Wave Rotor
Transit to Mars
NIAC Phase I
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