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Estimation of hysteretic losses for MgB2 tapes under the operating conditions of a generator

机译:估算发电机运行条件下MgB2磁带的磁滞损耗

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Hysteretic losses in the MgB2 wound superconducting coils of a 550 kW synchronous hybrid scaled generator were estimated as part of the European project SUPRAPOWER led by the Spanish Fundacion Tecnalia Research & Innovation. Particular interest was given to the losses caused by the magnetic flux ripples in the rotor coils originating from the conventional stator during nominal operation. To compute these losses, a 2D finite element analysis was conducted and Maxwell's equations written in the H-formulation were solved considering the nonlinear material properties of the conductor materials. The modeled tapes are made of multiple MgB2 filaments embedded in a Ni matrix and soldered to a high purity copper strip and insulated with Dacron braid. Three geometrical models of single tape cross sections of decreasing complexity were studied: (1) the first model reproduced closely the actual cross section obtained from tape micrographs. (2) The second model was obtained from the computed elasto-plastic deformation of a round Ni wire. (3) The third model was based on a simplified cross section with the superconducting filaments bundled in a single elliptical bulky structure. The last geometry allowed the validation of the modeling technique by comparing numerical losses with results from well-established analytical expressions. Additionally, the following cases of filament transpositions of the multi-filamentary tape were studied: no transposition, partial and full transposition; thereby improving understanding of the relevance of the tape fabrication process on the magnitude of the determination of ac losses. Finally, choosing the right level of geometrical detail, the following operational regimes of the machine and its impact on individual superconducting tape losses in the rotor were studied: bias-dc current, ramping current under ramping background field and magnetic flux ripples under dc background current and field.
机译:550 kW同步混合比例缩放发电机的MgB2缠绕超导线圈中的磁滞损耗是由西班牙基金会(Tecnalia Research&Innovation)主导的欧洲项目SUPRAPOWER的一部分进行估算的。特别关注在标称运行期间由常规定子引起的转子线圈中的磁通量波动引起的损耗。为了计算这些损耗,进行了二维有限元分析,并考虑了导体材料的非线性材料特性,以H公式编写了麦克斯韦方程组。建模的胶带由嵌入在Ni基体中的多根MgB2细丝制成,并焊接到高纯度铜带上,并用Dacron编织带绝缘。研究了降低复杂度的单个胶带横截面的三个几何模型:(1)第一个模型重现了从胶带显微照片获得的实际横截面。 (2)第二个模型是从计算得出的圆镍丝的弹塑性变形获得的。 (3)第三个模型基于简化的横截面,将超导细丝捆扎成一个椭圆形的大体积结构。最后的几何形状通过将数值损失与完善的分析表达式的结果进行比较,从而验证了建模技术的有效性。另外,研究了以下多丝带的长丝移位的情况:无移位,部分移位和完全移位;从而提高了对胶带制造工艺对交流损耗确定幅度的相关性的理解。最后,选择合适的几何细节水平,研究了机器的以下运行方式及其对转子中各个超导带损耗的影响:偏置直流电流,在倾斜背景场下的倾斜电流和在直流背景电流下的磁通波动和领域。

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