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Intermediate Temperature Ceramic Heat Pipe Modeling and OptimizationThe intermediate temperature regime of heat pipes, 450-700 K, has not been well characterized due in part to the corrosive nature of many of the working fluids, as well as the poor performance in many conventional metal envelope systems. Spacecraft nuclear electric propulsion, as well as other emerging technologies, can benefit from heat pipes with optimal performance in this intermediate regime. In this work, we have explored halide working fluids coupled with aluminum nitride shells to operate at 500-600 K and interface with a nuclear electric propulsion system. The shells have been additively manufactured and tested to ensure compatibility with the halides. Specifically, AlBr3, AlCl3, FeCl3, and SbBr3 were selected owing to their higher performance and comparatively safe handling characteristics compared to other intermediate temperature working fluids. The additive manufacturing process enables highly customizable designs that integrate the heat pipe and radiator fin together, optimized for each fluid. We have evaluated the performance limits of such a heat pipe design in order to establish the feasibility of AlBr3 in particular, and present design that achieves an areal density of 5.2 kg/m2 and mass per unit heat performance of 0.71 kg/kW. Analysis is ongoing for all working fluids.
Document ID
20240009802
Acquisition Source
Glenn Research Center
Document Type
Presentation
Authors
Andrew van Paridon
(Cornell University Ithaca, United States)
Giancarlo D'Orazio
(Cornell University Ithaca, United States)
Sadaf Sobhani
(Cornell University Ithaca, United States)
William Sixel
(Glenn Research Center Cleveland, United States)
Date Acquired
July 30, 2024
Subject Category
Fluid Mechanics and Thermodynamics
Meeting Information
Meeting: Thermal and Fluids Analysis Workshop (TFAWS)
Location: Cleveland, OH
Country: US
Start Date: August 26, 2024
End Date: August 30, 2024
Sponsors: NASA Engineering and Safety Center
Funding Number(s)
WBS: 920121.01.04.01
CONTRACT_GRANT: 80NSSC23K0236
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
Single Expert
Keywords
thermal management
heat pipe
additive manufacturing
ceramics
nuclear electric propulsion
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