Characterization Testing of a 20 Kelvin Cryocooler for Space Applications Future NASA space exploration missions will require long-duration storage and liquefaction of cryogenic liquids, enabled by active cooling provided by cryocoolers. Recent gap analyses of Lunar and Mars transportation systems have identified 20 K-class cryocoolers as a critical enabling technology for chemical and nuclear thermal propulsion architectures using liquid hydrogen propellant. To address this technology gap, NASA has undergone the development of a high-efficiency, high-capacity 20 K cryocooler via an SBIR partnership with Creare. While the January 2025 testing demonstrated functionality and compliance with contractual requirements, the objective of the NASA-led characterization effort was to generate a dataset for supporting future mission designs across a broader operating envelope, including off-nominal conditions. The cryocooler demonstrated strong performance, achieving a peak coefficient of performance of 17.68% relative to Carnot efficiency and a maximum lift capacity of 24.4 W at 21 K. Overall, the results confirm that the 20 W 20 K cryocooler provides a flexible range of capabilities to enable zero boil-off storage of liquid hydrogen for future Lunar and Mars missions. The data collected provide a strong foundation for model validation and future system design efforts.
Document ID
20260005078
Acquisition Source
Glenn Research Center
Document Type
Conference Paper
Authors
B T Nugent (Glenn Research Center Cleveland, United States)
W L Johnson (Glenn Research Center Cleveland, United States)
R J Grotenrath (Glenn Research Center Cleveland, United States)
J R Stephens (Marshall Space Flight Center Redstone Arsenal, United States)
M G Perkins (HX5, LLC)
Date Acquired
June 4, 2026
Subject Category
Fluid Mechanics and Thermodynamics
Meeting Information
Meeting: International Cryocooler Conference (ICC) 24