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Heat Generation and Temperature Rise in a Resistive Type Superconducting Fault Current Limiter

机译:电阻型超导故障电流限制器中的发热和温度升高

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In superconducting power apparatus, electric insulation is one of the most important deciding factors on their performance. There has been investigations about bubble generation and insulation strength in SFCLs. However, the relationship between short circuit current and heat generation is not sufficiently investigated. The objective of this paper is to investigate the influence of short circuit current on Joule heat generation in a YBCO-type resistive type SFCL. A 3-D model with superconducting tape winded on a PE pipe was built. Simulation was done considering the current density, thermal exchange and movement of liquid nitrogen. Results showed that heat generation was mainly affected by current passing through superconducting tapes with a relationship as Q ∝ k*I~3 from 200A to 400A.
机译:在超导动力装置中,电绝缘是它们性能最重要的决定因素之一。 SFCLS中的泡泡生成和绝缘强度都有研究。然而,不充分研究短路电流和发热之间的关系。本文的目的是研究短路电流对YBCO型电阻型SFCL中焦耳发热的影响。建立了一个三维卷尺缠绕在PE管上。考虑到液态氮的电流密度,热交换和运动完成模拟。结果表明,发热主要受电流的影响,通过超导磁带,与200A至400A的Qαk* I〜3的关系。

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