Helium i heat transfer in a small natural circulation loop with self-sustaining recondensation

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Abstract

Heat transfer of helium I in a natural circulation loop is experimentally studied around atmospheric pressure. The test section of the loop has an inner diameter of 4 mm and a height of 23 cm and can be uniformly heated by wire heater. On top of the loop, a condenser is mounted and thermally connected to the second-stage of a 1.5 W at 4.2 K GM cryocooler. Helium can be recondensed in the condenser, where the pressure is regulated around the atmospheric pressure. While the dissipated heat flux is increased from 0 to 1 W, one encounters the different heat transfer regimes as single phase liquid convection, two phase nucleate boiling and single phase vapor convection. The wall superheat varies up to 11 K in the single phase vapor convection regime. The wall temperature measurement allows obtaining the boiling curve and determining the heat transfer coefficient.

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Song, Y., Four, A., & Baudouy, B. (2014). Helium i heat transfer in a small natural circulation loop with self-sustaining recondensation. In AIP Conference Proceedings (Vol. 1573, pp. 1483–1489). American Institute of Physics Inc. https://doi.org/10.1063/1.4860882

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