Print Email Facebook Twitter Modeling and Characterization of a ReBCO HTS Degaussing Demonstrator Title Modeling and Characterization of a ReBCO HTS Degaussing Demonstrator Author Hanse, I. (University of Twente) Wikkerink, D.P. (TU Delft DC systems, Energy conversion & Storage) Keijzer, R. (University of Twente) Dhalle, M. (University of Twente) ten Kate, H.H.J. (University of Twente) ter Brake, H.J.M. (University of Twente) Date 2022 Abstract The magnetic modelling and experimental validation of a superconducting degaussing system for maritime vessels is discussed. Degaussing coils compensate for the distortion in the earths' magnetic field by the magnetized steel hull of a ship, thus rendering it 'invisible' for magnetic field sensors. Whereas typical power requirements with copper coils are of the order of 100 kW, a ReBCO HTS degaussing system in principle allows to reduce this by an order of magnitude. In order to validate such efficiency estimates and to demonstrate the required hardware, a table-top test setup was realized with magnetic ship steel. The vessel-imitating cylindrical demonstrator is equipped with six degaussing coils, grouped in three sets that act in two different directions, with each set consisting of one copper and one ReBCO coil, the latter one equipped with a sub-cooled forced-flow liquid nitrogen system. Static magnetic field measurements are reported and compared to both analytical and numeric finite element models. The results illustrate how even relatively simple analytical models can be used as a powerful tool to extrapolate design parameters and thus to predict the power requirements of large-scale degaussing systems. Subject 2G HTS ConductorsFinite element methodsHTS CablesHTS coilsmodeling To reference this document use: http://resolver.tudelft.nl/uuid:d5e4819c-2cb9-44c3-974e-63239fd64e56 DOI https://doi.org/10.1109/TASC.2022.3180967 ISSN 1051-8223 Source IEEE Transactions on Applied Superconductivity, 32 (6), 1-5 Part of collection Institutional Repository Document type journal article Rights © 2022 I. Hanse, D.P. Wikkerink, R. Keijzer, M. Dhalle, H.H.J. ten Kate, H.J.M. ter Brake Files PDF Modelling_and_characteriz ... trator.pdf 705.92 KB Close viewer /islandora/object/uuid:d5e4819c-2cb9-44c3-974e-63239fd64e56/datastream/OBJ/view