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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Optimization of 1 MVA high T/sub C/ superconducting transformer windings
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Optimization of 1 MVA high T/sub C/ superconducting transformer windings

机译:优化1 MVA高T / sub C /超导变压器绕组

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摘要

It is common practice to wind coils in pancake shape for conventional high voltage transformers because of electrical insulation problems. In HTS superconducting transformers, the perpendicular component of magnetic flux density (B/sub r/) applied to HTS tapes of pancake windings becomes larger than that of solenoid winding, thereby decreasing the critical current in the HTS tapes. This paper introduces several methods to reduce B/sub r/ applied to the HTS tapes in the transformer with double pancake windings by changing winding arrangements and the relative permeability of flux diverters. We have conducted a winding design for a single-phase 1 MVA 22.9 kV/6.6 kV HTS transformer. The magnetic field in the spaces occupied by the windings and its vicinity was numerically simulated. We observed a change of B/sub r/ due to various gap arrangements of high voltage and low voltage windings and various reciprocal arrangements. We also observed a change of B/sub r/ on the HTS tapes due to variation of relative permeability of flux diverters placed between the high voltage winding and the low voltage winding.
机译:对于常规的高压变压器,由于电绝缘问题,通常以薄煎饼形状缠绕线圈。在HTS超导变压器中,施加到煎饼绕组的HTS带上的磁通密度(B / sub r /)的垂直分量变得比螺线管绕组大,从而降低了HTS带中的临界电流。本文介绍了几种通过改变绕组布置和磁通量分流器相对磁导率来降低应用于双煎饼绕组变压器中HTS带的B / sub r /的方法。我们已经为单相1 MVA 22.9 kV / 6.6 kV HTS变压器进行了绕组设计。数值模拟了绕组所占据的空间及其附近的磁场。我们观察到B / sub r /的变化是由于高压和低压绕组的各种间隙布置以及各种相互布置引起的。我们还观察到HTS磁带上B / sub r /的变化是由于放置在高压绕组和低压绕组之间的磁通转向器的相对磁导率变化所致。

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