Comparison of 2D simulation models to estimate the critical current of a coated superconducting coil
Liu, Yingzhen and Ou, Jing and Grilli, Francesco and Schreiner, Fabian and Zermeno, Victor Manuel Rodriguez and Zhang, Min and Noe, Mathias (2019) Comparison of 2D simulation models to estimate the critical current of a coated superconducting coil. Superconductor Science and Technology, 32 (1). 014001. ISSN 0953-2048 (https://doi.org/10.1088/1361-6668/aae960)
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Abstract
Superconductors have been being applied to a variety of large-scale power applications, including magnets, electric machines, and fault current limiters, because they can enable a compact, lightweight and high efficiency design. In applications such as those mentioned above, superconducting coils are always a key component. For example, in a superconducting electric machine, the superconducting coils are used to generate the main flux density in the air gap, which is significantly important for the energy conversion. It is the performance of the superconducting coils that plays an essential role in determining the performance of the device. However, the performance of a superconducting coil is limited by its critical current, which is determined by temperature and the magnitude and orientation of the magnetic field inside the superconductors. Hence, in-depth investigations to estimate the critical current of the superconducting coils are necessary before manufacturing. Available transient simulation models to estimate the critical current are through the H- and T-A formulations of Maxwell's equations. Both methods consider the same current ramp-up process occurring in experiments. Besides these transient models, static simulations can also be used: a modified load-line method and the so-called P-model, which is based on the asymptotic limit of Faraday's equation when time approaches infinity. To find the best way to calculate the critical current, the four methods are used to estimate the critical current of a double pancake superconducting coils and results are compared with experiments. As a conclusion, T-A formulation, P-model, and the modified load-line methods are recommended for estimating the critical current of the superconducting coils.
ORCID iDs
Liu, Yingzhen, Ou, Jing, Grilli, Francesco, Schreiner, Fabian, Zermeno, Victor Manuel Rodriguez, Zhang, Min ORCID: https://orcid.org/0000-0003-4296-7730 and Noe, Mathias;-
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Item type: Article ID code: 68973 Dates: DateEvent1 January 2019Published28 November 2018Published Online18 October 2018AcceptedSubjects: Technology > Electrical engineering. Electronics Nuclear engineering
Science > PhysicsDepartment: Faculty of Engineering > Electronic and Electrical Engineering Depositing user: Pure Administrator Date deposited: 23 Jul 2019 10:34 Last modified: 26 Nov 2024 19:34 Related URLs: URI: https://strathprints.strath.ac.uk/id/eprint/68973