层压磁芯单相变压器热负荷的比较

A. Stavinskiy, A. Tsyganov, D. Babenko, O. Sadovoy
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引用次数: 0

摘要

改进变压器的一个有希望的方向是改变电磁系统的结构和设计。单相变压器的棒状和铠装层状磁芯采用各向异性电工钢。这种磁路分别包含4个和6个磁通方向相对于带层合接头的钢的织构变化的角区,这会造成显著的额外损失。改进单相变压器是可能的,取代命名的平面系统,以对称的径向电磁系统与三个角区三棒磁路。基于无量纲优化分量和通用相对控制变量的不变目标函数方法,建立了确定1000 V以下各型号油单相变压器绕组平均热负荷的数学模型。为变压器优化过程中热设计约束的校核和比较提供了可能。介绍了三相磁路单相变压器径向电磁系统的优点。
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Comparison of Thermal Loads a Single-Phase Transformer With a Laminated Magnetic Core
A promising direction for improving transformers is to transform structures and design of the electromagnetic systems. Rod and armored laminated magnetic cores of single-phase transformers are made of anisotropic electrical steel. Such magnetic circuits contain, respectively, four and six angular zones of magnetic flux direction change relative to the texture of steel with laminated joints, which causes significant additional losses. Improvement of single-phase transformers is possible by replacing named planar systems with a symmetrical radial electromagnetic system with three angular zones of three-rod magnetic circuit. Based on the method of invariant objective functions with dimensionless optimization components and universal relative controlled variables, mathematical models for determining the average thermal loads of the windings of the named variants of oil single-phase transformers with voltage up to 1000 V have been developed. The possibility of checking and comparing the thermal design constraint during the optimization of transformer is provided. The advantages of the radial electromagnetic system of a single-phase transformer with a three-rod magnetic circuit are shown.
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