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NASA NTRS · 19920041224

Self-driven cooling loop for a large superconducting magnet in space

Abstract

Pressurized cooling loops in which superfluid helium circulation is driven by the heat being removed have been previously demonstrated in laboratory tests. A simpler and lighter version which eliminates a heat exchanger by mixing the returning fluid directly with the superfluid helium bath was analyzed. A carefully designed flow restriction must be used to prevent boiling in this low-pressure system. A candidate design for Astromag is shown that can keep the magnet below 2.0 K during magnet charging. This gives a greater margin against accidental quench than approaches that allow the coolant to warm above the lambda point. A detailed analysis of one candidate design is presented.

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BibTeXRIS

Mord, A. J., Snyder, H. A.. 1992-01-01. Self-driven cooling loop for a large superconducting magnet in space. https://ntrs.nasa.gov/citations/19920041224

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