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Three-Phase Shunts for Stray Magnetic Field

机译:用于杂散磁场的三相分流

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摘要

In the most basic form transformer consists from a primary and secondary winding coupled with alternating magnetic field. Main part of magnetic field runs through high permeability iron core. However, every transformer also has a stray component of magnetic field which doesn't couple primary and secondary winding. The losses in metal part of a transformer induced by the stray component of magnetic field are called stray losses. Although it induces losses, the stray magnetic field in power transformer is helpful in limiting the short-circuit current in the grid. To cope with negative aspects of the stray field, power transformer manufacturers developed a number of measures to reduce the impact. The paper presents ways to control stray losses outside of winding with increasing the magnetic resistance, active and passive magnetic shields. Also it is presented a case report for three-phase shunts applied to the transformer of 245 kV, 500 MVA.
机译:在最基本的形式中,变压器由耦合与交替磁场的主绕组和次级绕组组成。磁场的主要部分通过高渗透性铁芯进行。然而,每个变压器还具有磁场的杂散成分,其不耦合初级和次级绕组。由磁场的杂散成分引起的变压器的金属部分的损失称为杂散损耗。虽然它引起损耗,但功率变压器中的杂散磁场有助于限制网格中的短路电流。为了应对杂散场的负面方面,电力变压器制造商开发了一些减少撞击的措施。本文介绍了在绕组外控制杂散损耗,随着磁阻,主动和被动磁屏蔽的增加。还提出了一种案例报告,适用于345 kV,500 mVA的变压器的三相分流器。

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