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Calculation of the Magnetic Field and Inrush Current in a Three-phase Transformer

机译:三相变压器中磁场和浪涌电流的计算

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When a power transformer is connected to the grid, the inrush current increases substantially with a high value of harmonic components. At that time, the amount of flux in the core increases causing the magnetic circuit to saturate with a duration up to many grid cycles. This may cause malfunction of protection relays or interfere the operating condition of nearby electrical instruments. Therefore, it is important to analyze the phenomenon of the inrush current and the magnetic field inside the transformer. This paper has derived a simulation model for three power transformers with capacity of 250kVA, 1500kVA and 2200kVA by using Ansys Maxwell 3D software when connecting the transformers to power grid under no load condition. The winding voltages, the inrush currents, and the flux density inside the core of each transformers have been analyzed. Furthermore, with the help of the finite element method, the overvoltage and/or overheating phenomenon of transformers can also be studied.
机译:当电力变压器连接到电网时,浪涌电流基本上增加,具有高谐波分量。 此时,核心中的通量量增加,导致磁路饱和,持续到许多网格循环。 这可能导致保护继电器故障或干扰附近电气仪器的操作条件。 因此,重要的是分析浪涌电流和变压器内部磁场的现象。 本文通过使用ANSYS MAXWELD 3D软件在无负载条件下将变压器连接到电网时,使用ANSYS MAXWELD 3D软件推出了三个电源变压器的仿真模型。 已经分析了卷绕电压,浪涌电流和每个变压器的核心内的磁通密度。 此外,在有限元方法的帮助下,还可以研究变压器的过电压和/或过热现象。

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