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Finite Element Analysis and Optimization for Magnetic Circuit System of Moving-Coil Linear Compressor

机译:动圈式线性压缩机磁路系统的有限元分析与优化

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摘要

In order to solve the calculation problem which was caused by the large mesh quantity and convergent issue when finite element model was established according to the real magnetic circuit system structure of moving-coil linear compressor, a new modeling method was proposed. Based on ANSYS parametric design language, a parametric finite element model for magnetic circuit system of moving-coil linear compressor was established and the magnetic analysis was carried out. The validity and reliability of the finite element model was verified through magnetic experiment. According to the magnetic analysis results, the structural optimization design for magnetic circuit system was accomplished and a reasonable schematic was achieved. The optimization results show that not only the magnetic induction of gas gap is increased by 28.16%, but a permanent magnet is also operating at the optimal point and the magnetic saturation of iron core has been removed thoroughly.
机译:为了解决根据动圈式线性压缩机的实际磁路系统结构建立有限元模型时,由于网格数量大和收敛问题而引起的计算问题,提出了一种新的建模方法。基于ANSYS参数化设计语言,建立了动圈式线性压缩机磁路系统的参数有限元模型,并进行了磁学分析。通过磁实验验证了有限元模型的有效性和可靠性。根据磁分析结果,完成了磁路系统的结构优化设计,获得了合理的电路图。优化结果表明,不仅气隙的磁感应强度提高了28.16%,而且永磁体也在最佳位置运行,铁芯的磁饱和被彻底消除。

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