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6.4 MVA resitive fault current limiter based on Bi-2212 superconductor

机译:6.4基于Bi-2212超导体的MVA静置故障电流限制器

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ABB has recently successfully developed and tested a single phase 6.4 MVA superconducting fault current limiter (SCFCL) demonstrator, which is based on a novel conductor design and innovative Bi-2212 ceramic fabrication technology. At present, it represents the highest rated power reported for HTS based SCFCL. The employed SCFCL component is a composite consisting of layers of bulk Bi-2212 ceramic, resistive metallic electrical bypass and fibre reinforced plastic (FRP). The Bi-2212 conductor is fabricated in sheets with an area of 30 x 40 cm~2 by using a modified partial melt process and is subsequently structured into long length meanders. The as-processed Bi-2212 is non-textured and exhibits a uniform j_c in the range of 3000-5000 A/cm~2. The employment of a robust bypass facilitates a uniform quench in the SCFCL component during a fault event. Depending on the level of prospective fault current, a fault current is typically reduced to around 10 times nominal current in the first current peak and further to 2-5 times after 50 ms into the fault. Test and simulation results of the 6.4 MVA demonstrator, together with the application prospects of such Bi-2212 based SCFCL are presented and discussed.
机译:ABB最近成功开发并测试了单阶段6.4 MVA超导故障电流限制器(SCFCL)演示,其基于新的导体设计和创新的Bi-2212陶瓷制造技术。目前,它代表了基于HTS的SCFCL报告的最高额定功率。所用的SCFCL组分是由散装层Bi-2212陶瓷,电阻金属电气旁路和纤维增强塑料(FRP)组成的复合物。使用改性的部分熔体工艺,在薄片中以30×40cm〜2的薄片制成的,随后构造成长度蜿蜒。由于处理的Bi-2212是非纹理的并且在3000-5000A / cm〜2的范围内呈现均匀的J_C。在故障事件期间,鲁棒旁路的就业便于在SCFCL组件中均匀淬火。根据前瞻性级电流的水平,故障电流通常在第一电流峰值中的标称电流大约10倍,并且在50 ms进入故障后进一步为2-5次。 6.4 MVA示威者的测试和仿真结果以及介绍并讨论了基于BI-2212的SCFCL的应用前景。

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