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An improved heat transfer configuration for a solid-core nuclear thermal rocket engineInterrupted flow, impingement cooling, and axial power distribution are employed to enhance the heat-transfer configuration of a solid-core nuclear thermal rocket engine. Impingement cooling is introduced to increase the local heat-transfer coefficients between the reactor material and the coolants. Increased fuel loading is used at the inlet end of the reactor to enhance heat-transfer capability where the temperature differences are the greatest. A thermal-hydraulics computer program for an unfueled NERVA reactor core is employed to analyze the proposed configuration with attention given to uniform fuel loading, number of channels through the impingement wafers, fuel-element length, mass-flow rate, and wafer gap. The impingement wafer concept (IWC) is shown to have heat-transfer characteristics that are better than those of the NERVA-derived reactor at 2500 K. The IWC concept is argued to be an effective heat-transfer configuration for solid-core nuclear thermal rocket engines.
Document ID
19920071439
Acquisition Source
Glenn Research Center
Document Type
Conference Paper
Authors
John S Clark
(NASA Lewis Research Center Cleveland, OH, United States)
James T Walton
(NASA Lewis Research Center Cleveland, OH, United States)
Melissa McGuire
(University of Cincinnati Cincinnati, United States)
Date Acquired
August 15, 2013
Publication Date
July 1, 1992
Subject Category
Spacecraft Propulsion and Power
Report/Patent Number
AIAA PAPER 92-3583
Report Number: AIAA PAPER 92-3583
Meeting Information
Meeting: 28th AIAA SAE ASME Joint Propulsion Conference
Location: Nashville, TN
Country: US
Start Date: July 5, 1992
End Date: July 8, 1992
Sponsors: American Institute of Aeronautics and Astronautics
Accession Number
92A54063
Distribution Limits
Public
Copyright
Other

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