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2D finite-element determination of tank wall losses in pad-mounted transformers

机译:垫装式变压器箱壁损耗的二维有限元确定

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This paper presents a two-dimensional (2D) finite-element (FE) analysis of losses generated in the tank wall surrounding the high-current bushings of pad-mounted transformers. Although the problem is truly three-dimensional (3D), it is shown that a 2D approach gives results that closely agree with 3D simulations and experimental results. Thus, it is possible to avoid the very demanding computational resources required for 3D modeling or the cost of experiments. Nine cases are analyzed to study the impact of inserting small plates of different geometry (located near the high-current terminals) on the reduction of tank losses. Significant reductions in stray losses on the tank wall are obtained with low-cost plate inserts. 2D and 3D time-harmonic FE models are used to determine the losses in the tank wall. Two load loss tests were carried out on experimental transformers to validate the simulations.
机译:本文提出了一种二维(2D)有限元(FE)分析,该分析是围绕焊盘安装式变压器的大电流套管在油箱壁中产生的损耗的。尽管该问题确实是三维(3D)问题,但可以证明2D方法提供的结果与3D模拟和实验结果非常吻合。因此,可以避免3D建模所需的非常苛刻的计算资源或实验成本。分析了九个案例,以研究插入不同几何形状的小板(位于大电流端子附近)对减少油箱损耗的影响。低成本的板状插入件可显着减少罐壁上的杂散损失。 2D和3D时谐有限元模型用于确定罐壁的损失。在实验变压器上进行了两次负载损耗测试,以验证仿真结果。

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