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Calculation of losses and temperature rise for high frequency transformer under forced-air convection

机译:强制空气对流下高频变压器的损耗和温升的计算

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This paper presents a method for loss calculation, including core losses and winding losses, and temperature rise in high frequency transformer design under forced-air convection. Analytical models of winding losses for multiple-layer copper foil and Litz wire windings with MMF boundary conditions have been developed. Geometric parameters of conductor and distribution of magneto-motive forces are considered in the formulation of the winding loss equations. Comparing with the FEM simulation result, it shows that these two models can achieve good accuracy. The core losses were calculated using modified Steinmetz equation (MSE), which has been validated for power ferrite material. The winding loss models, including copper foil model and Litz wire model, were developed for multiple-layer with magneto-motive forces boundary conditions. To verify the accuracy of these two models, the 2D FEM simulation was used for comparison, and the errors of copper foil model and Litz wire model were within 1% and around 5%∼9%, respectively. The 5-R modified model for E-type core was presented as 5 resistors by thermal network to evaluate temperature rise under forced-air convection, and the heat transfer coefficients and material properties were obtained using thermal measurement in wind tunnel.
机译:本文提出了一种计算损耗的方法,包括铁芯损耗和绕组损耗,以及强制空气对流下高频变压器设计中的温升。已经开发了具有MMF边界条件的多层铜箔和李兹线绕组的绕组损耗分析模型。在制定绕组损耗方程时,应考虑导体的几何参数和电动势的分布。与有限元仿真结果比较,表明这两个模型可以达到较好的精度。使用修正的Steinmetz方程(MSE)计算铁心损耗,该方程已针对功率铁氧体材料进行了验证。绕组损耗模型,包括铜箔模型和李兹线模型,是针对具有电动势边界条件的多层模型而开发的。为了验证这两个模型的准确性,使用了二维有限元模拟进行比较,铜箔模型和李兹线模型的误差分别在1%以内和5%〜9%左右。通过热网络将E型铁心的5-R改进模型作为5个电阻器进行了评估,以评估强制空气对流下的温度升高,并通过风洞中的热测量获得了传热系数和材料特性。

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