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Finite Element CAD Experiments on the Effect of Magnetic Loss in Power Transformers with Laminated Cores

机译:有限元CAD实验关于电力变压器磁力损耗与层压芯的影响

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The paper describes a simulated experiment that focuses on the numeric computation of magnetic loss in the laminated core of a single-phase power transformer. The students’ laboratory work is part of the library of experiments of the Electrical Machines virtual laboratory and makes use of the two-dimensional open-access electromagnetic field analysis software Finite Element Method Magnetics. The idea of the simulated exercise is to demonstrate how the magnetic loss caused by time-varying excitations affects the magnetic permeability, μ, of the laminated core and the terminal quantities of the energizing winding. A parametric analysis employing different values for the electrical conductivity and maximum hysteresis-induced angle of the laminated material yields five different field problems with increasing magnetic loss. Electric circuits characterized by the (I-V) operating point and reflected impedance of the energizing winding provide the information required to compute the changes in real power ΔP, reactive power ΔQ and magnetically stored energy ΔWm between successive problems characterized by increasing magnetic loss. The concept of reflected impedance helps to explain the physical meaning of the changes in power dissipation and energy storage in the laminated core.
机译:本文介绍了一种模拟实验,专注于单相电力变压器的层压芯中磁损耗的数值计算。学生的实验室工作是电机虚拟实验室的实验库的一部分,并利用二维开放式电磁场分析软件有限元法磁性。模拟练习的思想是展示时变激励引起的磁力损失如何影响层叠芯和激励绕组的端子量的磁导率μ。采用不同值的电导率和最大滞后诱导的层压材料角度的参数分析产生了五种不同的场问题随着磁力损失的增加。由(I-V)操作点的电路和激励绕组的反射阻抗提供了计算实际功率ΔP,无功功率ΔQ和磁存储能量ΔWM所需的信息所需的信息,其特征在于增加磁损失。反射阻抗的概念有助于解释叠层芯中功耗和能量储存变化的物理含义。

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