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首页> 外文期刊>Physica, C. Superconductivity and its applications >Revisiting the homogenized domain model for fast simulation of AC transport power losses in first generation high temperature superconducting tapes and cables
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Revisiting the homogenized domain model for fast simulation of AC transport power losses in first generation high temperature superconducting tapes and cables

机译:重新检测第一代高温超导胶带和电缆中交流运输功率损耗快速仿真的均质结构域模型

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摘要

Challenges, linked with FEM modelling of HTS power cables, include the long computational time required to simulate the small domains that Bi-2223 superconductors possess in a large device. To decrease that time, in this paper the models of AC transport power losses for a tape and a simplified cable are achieved by a homogenization technique via a "filamentary-equivalent domain" approach. In it, a single homogenous domain with effective material properties is used to represent the superconducting material, where the domain would have the approximate shape of the multifilamentary region. In order to investigate its validity for a range of transport currents, including overcurrent, four tapes from the literature are modelled in three configurations. A simplified cable model is modelled via the homogenized model and an analytical equivalent circuit model. The homogenization technique can accurately predict the transport power losses of the majority of configurations while demonstrating fast computational times and is promising for simulation of real power cables.
机译:与HTS电力电缆有限元建模相关联的挑战包括模拟Bi-2223超导体在大器件中具有的小域所需的长计算时间。为了减少那个时间,在本文中,通过“丝状相当域”方法通过均质化技术实现胶带和简化电缆的AC传输功率损耗的模型。在其中,使用具有有效材料特性的单个均匀结构域来表示超导材料,其中域将具有多丝区域的近似形状。为了调查其对一系列运输电流的有效性,包括过电流,来自文献的四个磁带以三种配置建模。简化的电缆型号通过均质模型和分析等效电路模型进行建模。均质化技术可以准确地预测大多数配置的运输功率损耗,同时展示快速计算时间,并且很有希望用于模拟实际电力电缆。

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