论文标题

超导力型通量泵的3D建模

3D modeling of a Superconducting Dynamo-Type Flux Pump

论文作者

Ghabeli, Asef, Pardo, Enric, Kapolka, Milan

论文摘要

高温超导(HTS)发电机是有前途的设备,可以以非接触式方式将大型直流电流注入超导器或磁铁的绕组中。因此,不再需要HTS机器中的麻烦刷子或笨重的电流导线,并不再需要高热损失。 HTS Dynamo的工作机制在近年来一直存在争议,并提出了一些解释和模型来阐明其性能。在本文中,我们介绍了HTS通量泵的第一个三维(3D)模型,该模型与实验非常吻合。该模型可能有益于阐明发电机的机制并确定其未注意的特征。使用此模型,我们在几个关键的时间步骤中深入研究了磁带表面的筛选电流和电场分布。这很重要,因为已证明过度临界筛选电流是通量泵送的原因。此外,我们分析了电场的两个组件和筛选电流对电压产生的影响,这在先前的2D建模中是不可能的。我们还探索了在不同气囊处的电压选项卡的必要距离,以精确测量磁带上磁带上的电压。

High temperature superconducting (HTS) dynamos are promising devices that can inject large DC currents into the winding of superconducting machines or magnets in a contactless way. Thanks to this, troublesome brushes in HTS machines or bulky currents leads with high thermal losses will be no longer required. The working mechanism of HTS dynamo has been controversial during the recent years and several explanations and models have been proposed to elucidate its performance. In this paper, we present the first three-dimensional (3D) model of an HTS flux pump, which has good agreement with experiments. This model can be beneficial to clarify the mechanism of the dynamo and pinpoint its unnoticed characteristics. Employing this model, we delved into the screening current and electric field distribution across the tape surface in several crucial time steps. This is important, since the overcritical screening current has been shown to be the reason for flux pumping. In addition, we analyzed the impact of both components of electric field and screening current on voltage generation, which was not possible in previous 2D modeling. We also explored the necessary distance of voltage tab at different airgaps for precise measurement of the voltage across the tape in the dynamo.

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