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- W4226396502 abstract "Due to rich resources and high demand for energy in coastal economy, offshore wind power has become the focus of development in recent years. In order to improve the transient stability of offshore wind power, it is urgent to develop large-capacity synchronous modulator. Based on this demand, this paper designs a new type of high temperature superconducting cable with high heat dissipation which can be used for superconducting synchronous modulators. The capacity of the synchronous modulator can be greatly improved by taking advantage of the high current carrying characteristics of superconducting materials. This paper established a finite element based on high heat dissipation structure of new type superconducting cable, electromagnetic simulation model based on 22 kinds of different specifications of cable electromagnetic simulation and results of post-processing, the superconducting tape stack Angle, superconducting tape width, group number and the number of each group of superconducting tape which can be variable parameters on the influence law of superconducting cable current carrying capacity, the results show that under the condition of the same current carrying capacity of cables, larger stack Angle, wider superconducting tape, fewer stack groups and more superconducting tape in each group can significantly reduce the influence of cable self-field on its current carrying capacity, which provides a basis for design optimization of new superconducting cable with high heat dissipation structure.KeywordsSuperconducting synchronous compensatorFinite element simulation modelElectromagnetic propertyCurrent-carrying capability" @default.
- W4226396502 created "2022-05-05" @default.
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- W4226396502 date "2022-01-01" @default.
- W4226396502 modified "2023-09-24" @default.
- W4226396502 title "Electromagnetic Analysis and Optimization Design of a New Structure Superconducting Cable with High Heat Dissipation Based on Superconducting Synchronous Compensator" @default.
- W4226396502 cites W2048805108 @default.
- W4226396502 cites W2073993425 @default.
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- W4226396502 doi "https://doi.org/10.1007/978-981-19-1532-1_134" @default.
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