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新型盘式行星永磁电机的等效动态磁网络模型
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作者 梁志文 刘欣 《浙江大学学报(工学版)》 EI CAS CSCD 北大核心 2024年第10期2182-2191,共10页
为了解决传统永磁电机低速直驱能力弱和输出单一的问题,提出新型盘式行星永磁电机.所提电机集盘式电机与行星驱动于一体,具有空间磁场结构复杂、低速直驱和多自由度动力输出的特点.分析所提电机的电磁性能,研究盘式转子与行星定子不均... 为了解决传统永磁电机低速直驱能力弱和输出单一的问题,提出新型盘式行星永磁电机.所提电机集盘式电机与行星驱动于一体,具有空间磁场结构复杂、低速直驱和多自由度动力输出的特点.分析所提电机的电磁性能,研究盘式转子与行星定子不均匀气隙的动态磁路模型,利用径向分环法将三维磁场模型分环为二维模型.考虑气隙不均、定子开槽和漏磁的影响,引入不均匀气隙位置分布函数,建立所提电机的等效气隙磁阻模型和等效漏磁阻模型.划分盘式转子和行星定子间的磁场区域,将动态磁路模型转化为时变的等效磁网络拓扑结构,计算得到电机的磁链和空载反电势.通过有限元和样机实验验证动态磁网络模型的有效性.相比三维有限元仿真,等效磁网络提高了计算效率,便于后续的结构参数分析和优化,为盘式行星永磁电机的磁场建模和分析提供了参考. 展开更多
关键词 不均匀气隙 盘式行星永磁电机 径向分环 气隙布函数 等效磁网络
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Changes in spatial variations of sap flow in Korean pine trees due to environmental factors and their effects on estimates of stand transpiration 被引量:2
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作者 Minkyu MOON Taek-yu KIM +4 位作者 Juhan PARK Sungsik CHO Daun RYU Sanguk SUH Hyun Seok KIM 《Journal of Mountain Science》 SCIE CSCD 2016年第6期1024-1034,共11页
It is difficult to scale up measurements of the sap flux density(J_S) for the characterization of tree or stand transpiration(E) due to spatial variations in J_S and their temporal changes.To assess spatial variations... It is difficult to scale up measurements of the sap flux density(J_S) for the characterization of tree or stand transpiration(E) due to spatial variations in J_S and their temporal changes.To assess spatial variations in the sap flux density of Korean pine(Pinus koraiensis) and their effects on E estimates,we measured the J_S using Granier-type sensors.Within trees,the J_S decreased exponentially with the radial depth,and the J_S of the east aspects were higher than those of the west aspects.Among trees,there was a positive relationship between J_S and the tree diameter at breast height,and this positive relationship became stronger as the transpiration demand increased.The spatial variations that caused large errors in E estimates(i.e.,up to 110.8 % when radial variation was ignored) had varied systematically with environmental factors systematic characteristics in relation to environmental factors.However,changes in these variations did not generate substantial errors in the E estimates.For our study periods,the differences in the daily E(E_D) calculated by ignoring radial,azimuthal and tree-to-tree variations and the measured E_D were fairly constant,especially when the daily vapor pressure deficit(D_D)was higher than 0.6 k Pa.These results imply that the effect of spatial variations changes on sap flow can be a minor source of error compared with spatial variations(radial,azimuthal and tree-to-tree variations) when considering E estimates. 展开更多
关键词 Sap flow Environmental factors Pinuskoraiensis Scale-up Stand transpiration
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