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Performance Analysis and Experimentation of a Liquid-Cooled Eddy Current Retarder With a Dual Salient Poles Design

机译:双凸极设计的液冷涡流缓速器的性能分析与实验

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A liquid-cooled eddy current retarder (ECR) with a dual salient poles design is proposed in this paper. Finite element models were developed to perform transient magnetic analysis and steady-state conjugate heat transfer analysis. The braking torque, eddy current field and thermal field of the retarder were each predicted. The retarder was subjected to two sets of tests on a test bench, to obtain the braking torque at various rotational speeds, while utilizing two different magnetomotive forces, respectively, and the torque was also tested while maintaining a constant rotational speed, for a specific amount of time. The good agreement shown between the calculations and measured data of the braking torque served to validate the analysis method. The experiments also showed that the braking torque of the retarder decreased more slowly than the braking torque of conventional ECRs in continuous operation.
机译:本文提出了一种具有双凸极设计的液冷涡流缓速器(ECR)。开发了有限元模型来执行瞬态磁分析和稳态共轭传热分析。分别预测了缓速器的制动转矩,涡流场和热场。缓速器在试验台上进行了两组试验,以分别利用两种不同的磁通势而获得各种转速下的制动转矩,并且还在保持恒定转速的情况下对转矩进行了试验。时间。计算结果和制动扭矩的实测数据之间显示出良好的一致性,这有助于验证分析方法。实验还表明,在连续运行中,缓速器的制动扭矩下降的速度比传统ECR的制动扭矩下降的速度慢。

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