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首页> 外文期刊>Physica, C. Superconductivity and its applications >Fault current limiter based on high temperature superconductors - different concepts, test results, simulations, applications
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Fault current limiter based on high temperature superconductors - different concepts, test results, simulations, applications

机译:基于高温超导体的故障限流器-不同的概念,测试结果,仿真,应用

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All electric equipment in a power system has to be designed to withstand the mechanical and thermal stresses of potential short-circuit currents. Any reduction of these currents can lead to significant cost savings. Among all current limiting devices, superconducting fault current limiters (SCFCL) offer ideal performance: in normal operation the SCFCL is in its superconducting state and has negligible impedance, in the event of a fault, the transition into the normal conducting state passively limits the current. Different high temperature superconductors (HTS) materials, like YBCO films, Bi2223 wires or Bi2212 bulk are under development for the use in SCFCL. Due to the brittle nature of HTS and the hot-spot problem, most HTS components for current limitation are composites comprising the HTS, a mechanical substrate or support, and an electrical bypass. The performance of the composites largely depend on the parameters: critical current density, I-V characteristics, thermal conductivity, thermal mass, and electrical bypass. Mainly two different concepts of SCFCL, namely, the "resistive" and the "shielded core" concept have been pursued in the past. In 1996 the first ever SCFCL was installed in a hydro-power plant. The device had a rated power of 1.2 MVA, it was of the "shielded core" type and was based on tubes of Bi2212-bulk material. The feasibility of the technology has been demonstrated in a one-year-endurance test. Recently more compact "resistive" SCFCLs based on the same Bi2212-bulk material have been developed. Theoretical models for the SCFCL show good agreement with experimental data. They are used to study the influence of SCFCLs in power systems in order to evaluate technical and economical advantages. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 9]
机译:电力系统中的所有电气设备都必须设计成能够承受潜在短路电流的机械应力和热应力。这些电流的任何减少都可以节省大量成本。在所有限流设备中,超导故障限流器(SCFCL)提供了理想的性能:在正常操作中,SCFCL处于超导状态,并且阻抗可忽略不计,如果发生故障,过渡到正常导通状态会被动地限制电流。目前正在开发不同的高温超导体(HTS)材料,例如YBCO薄膜,Bi2223导线或Bi2212块体,以用于SCFCL。由于HTS的脆性和热点问题,用于电流限制的大多数HTS组件是包含HTS,机械基板或支撑件以及电旁路的复合材料。复合材料的性能很大程度上取决于以下参数:临界电流密度,IV特性,导热率,热质量和电旁路。过去,SCFCL主要有两种不同的概念,即“电阻性”和“屏蔽芯”概念。 1996年,有史以来第一台SCFCL安装在水力发电厂中。该设备的额定功率为1.2 MVA,属于“屏蔽芯”类型,基于Bi2212-散装材料的管。这项技术的可行性已在一年的耐久性测试中得到了证明。最近,已经开发了基于相同Bi2212-本体材料的更紧凑的“电阻” SCFCL。 SCFCL的理论模型与实验数据显示出良好的一致性。它们用于研究SCFCL在电力系统中的影响,以评估技术和经济优势。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:9]

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