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Smartcoil-design, assembly and test of a 10 MVA superconducting air coil fault current limiter

机译:10 MVA超导空气线圈故障电流限制器的SmartCoil设计,装配和测试

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摘要

Within a German government funded project the partners Siemens AG and KIT have developed an iron-free inductive current limiter. The project aimed at a device for the medium voltage range, i.e. U = 10 kV with a nominal power of 10 MVA. One phase of this limiter was designed, manufactured and successfully tested. The limiter is based on a stack of closed superconducting ReBCO rings inserted into a conventional reactor coil. Under normal operation conditions, the rings shield the inner part of this coil. With the occurrence of a short circuit the superconducting rings quench and the impedance of the reactor coil becomes effective. The paper reports the principles of the design and the development of the superconducting ReBCO rings. It describes in detail the test of such rings, in particular the contactless determination of contact resistances and critical currents. Of particular importance was the development of a cryostat which minimizes the distance between the primary reactor coil and the superconducting insert. Finally, the device was tested in the Siemens test field in Berlin under the most relevant operation conditions. The limiting behavior complied with the predicted properties.
机译:在德国政府资助的项目中,合作伙伴西门子AG和套件已开发出无铁感应电流限制器。该项目旨在为中电压范围的装置,即,U = 10 kV,标称功率为10 mVA。设计,制造和成功测试了该限制器的一相。限制器基于一堆封闭的超导REBCO环,插入传统的反应器线圈。在正常运行条件下,环屏蔽该线圈的内部。随着短路的发生短路,超导环骤冷和反应器线圈的阻抗变得有效。本文报告了设计的原则和超导REBCO戒指的发展。详细地描述了对这种环的测试,特别是接触电阻和关键电流的非接触式确定。特别重要的是发展低温恒温器,其最小化初级反应器线圈和超导插入件之间的距离。最后,在最相关的操作条件下,该设备在柏林的西门子测试领域进行了测试。限制行为符合预测属性。

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