Performance of a 10-kJ SMES model cooled by liquid hydrogen thermo-siphon flow for ASPCS study

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Abstract

We propose a new electrical power storage and stabilization system, called an Advanced Superconducting Power Conditioning System (ASPCS), which consists of superconducting magnetic energy storage (SMES) and hydrogen energy storage, converged on a liquid hydrogen station for fuel cell vehicles. A small 10- kJ SMES system, in which a BSCCO coil cooled by liquid hydrogen was installed, was developed to create an experimental model of an ASPCS. The SMES coil is conductively cooled by liquid hydrogen flow through a thermo-siphon line under a liquid hydrogen buffer tank. After fabrication of the system, cool- down tests were carried out using liquid hydrogen. The SMES coil was successfully charged up to a nominal current of 200 A. An eddy current loss, which was mainly induced in pure aluminum plates pasted onto each pancake coils for conduction cooling, was also measured.

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Makida, Y., Shintomi, T., Hamajima, T., Ota, N., Katsura, M., Ando, K., … Komagome, T. (2015). Performance of a 10-kJ SMES model cooled by liquid hydrogen thermo-siphon flow for ASPCS study. In IOP Conference Series: Materials Science and Engineering (Vol. 101). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/101/1/012028

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