NASA NTRS · 20240009806
Intermediate Temperature Ceramic Heat Pipe Modeling and Optimization
Abstract
Spacecraft nuclear electric propulsion, as well as other emerging technologies, can benefit from heat pipes with optimal performance in the intermediate temperature, 450–700 K, regime. In this work, a 1D model was developed to investigate the performance of halide working fluids coupled with 3D printed-ceramic shells to operate at 500–600 K and interface with a nuclear electric propulsion system. An initial conceptual design and performance limits of a 3D printed-AlN heat pipe radiator with AlBr 3 as the working fluid is presented. An areal density of 5.2 kg/m 2 and mass per unit heat performance of 1.00kg/kW is estimated.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Andrew van Paridon, Giancarlo D'Orazio, William R. Sixel, Sadaf Sobhani. 2024-08-30. Intermediate Temperature Ceramic Heat Pipe Modeling and Optimization. https://ntrs.nasa.gov/citations/20240009806
Cite the original work for its findings. Save a collection to share your selection of sources.