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Experimental investigation of heat transfer through porous media in superfluid helium
Affiliation:1. CEA Saclay, Irfu/SACM, Gif-sur-Yvette F-91191, France;2. Université de Toulouse, INPT, UPS, IMFT (Institut de Mécanique des Fluides de Toulouse), Allée Camille Soula F-31400, France;3. CNRS, IMFT, F-31400, France;1. Department of Computer Engineering, Istanbul University, Istanbul, Turkey;2. Institute of Science and Engineering, Istanbul Commerce University, Istanbul, Turkey;3. Department RST, Institut Telecom/Telecom SudParis Evry, France;1. Université de Toulouse; INPT, UPS, Institut de Mécanique des Fluides de Toulouse, Allée Camille Soula, FR-31400 Toulouse, France;2. CNRS, Fédération de Recherche FERMAT, FR-31400 Toulouse, France;3. Center for Fundamental and Advanced Technical Research, Romanian Academy, Bd. Mihai Viteazul 24, RO-300223 Timisoara, Romania;4. Université de Toulouse; INPT, UPS, LAPLACE, 118, route de Narbonne, FR-31062 Toulouse, France;1. CAS Key Laboratory of Microscale Magnetic Resonance and Department of Modern Physics, University of Science and Technology of China (USTC), Hefei 230026, China;2. Hefei National Laboratory for Physical Sciences at Microscale, USTC, Hefei 230026, China;3. Synergetic Innovation Center of Quantum Information and Quantum Physics, USTC, Hefei 230026, China
Abstract:An experimental investigation of heat transfer through porous media in superfluid helium has been conducted in the framework of the development of porous electrical insulations for superconducting magnet cables cooled by superfluid helium. Several types of porous media with different characteristics were tested and, in particular, samples with pore size diameters of 0.1 μm, 1 μm, 2 μm, 10 μm and 20 μm. Temperature and pressure were measured between an insulating inner bath and the cryostat bath, communicating only through the porous medium. The cryostat bath is held constant all along the measurement and, for each sample, the tests are performed for bath temperature from 1.4 K to 2.1 K with 0.1 K increment. Depending on the porous medium average pore size diameter, different flow regimes are observed: for porous media with a pore diameter of 0.1 and 1 μm, only the Landau regime is observed whereas for porous media with a pore diameter of 2 μm, we observed the Landau regime and the Gorter-Mellink regime. For samples with a pore diameter of 10 and 20 μm, measurements only permitted to detect the Gorter-Mellink regime. In the laminar regime, the permeability of the samples was determined and it was found that the permeability is constant for bath temperature above 1.9 K whereas it increases as the bath temperature decreases from 1.8 K to 1.4 K. For samples with a pore size diameter of 10 and 20 μm, measurement permits only to observe the turbulent regime and the analysis exhibits a constant average tortuosity for each samples, independently of the bath temperature.
Keywords:Superfluid helium  Porous media  Heat transfer
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