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FEM simulations in designing saturated iron core superconducting fault current limiters

机译:设计饱和铁芯超导故障限流器的有限元模拟

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Proper design of the iron cores is crucial for a saturated iron core superconducting fault current limiter. An optimized design requires guaranteeing sufficient magnetic saturation on the iron cores holding the ac coils, ensuring the efficiency of current limiting, minimizing the use of materials, as well as satisfying the safety and stability obligations. One of the key tasks in the design is the series of electromagnetic calculations, including the complex three-dimensional electromagnetic field calculation. It is extremely difficult to calculate the magnetic field distribution through purely analytical methods because of the nonlinearity of magnetization for a ferromagnetic material. We used Finite Element Method (FEM) to solve the field distribution problem, and adopted Ansoft Maxwell for the computer simulation. Simulation results revealed that the iron cores with varying cross-sections of different windows were most effective for obtaining ideal magnetizing force distribution. Optimized design of the iron cores could be based on this simulation method. Experiments on a 380V/30A prototype were carried out to verify the designs.
机译:铁芯的正确设计对于饱和铁芯超导故障限流器至关重要。优化的设计需要保证在容纳交流线圈的铁芯上具有足够的磁饱和,确保电流限制的效率,最大程度地减少材料的使用,并满足安全性和稳定性要求。设计中的关键任务之一是一系列电磁计算,包括复杂的三维电磁场计算。由于铁磁材料的磁化非线性,因此仅通过分析方法来计算磁场分布极为困难。我们使用有限元方法(FEM)来解决场分布问题,并采用Ansoft Maxwell进行计算机仿真。仿真结果表明,不同窗口横截面变化的铁芯对于获得理想的磁化力分布最有效。铁芯的优化设计可以基于这种仿真方法。进行了380V / 30A原型的实验以验证设计。

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