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Magneto-mechanical analysis of magnetic gear pole pieces ring from analytical models for wind turbine applications

机译:风力发电机应用的分析模型对磁齿轮极靴环的磁机械分析

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摘要

This article deals with the structural behavior of a multi-bar system which maintains pole pieces in a concentric magnetic gear. Simplified analytic magnetic and mechanical models of the system are proposed in order to be integrated in a multi-criteria global optimization for the sizing of a magnetic gear in wind power applications. For this purpose, the reduction of the computation time is taken into account. The geometry of the support bar subsystem is defined and a Q bar structure is proposed. The magnetic study is based on Maxwell’s equations and subdomain method in order to determine variable radial and tangential magnetic loads. The mechanical study is based on a multibody model with different bars stiffnesses which are determined from a one-dimensional model. Variable radial and tangential magneto-mechanical pole pieces loads (magnetic load and weight) are also considered. An example of a magnetic gear with 172 pole pieces (i.e. 6-MW wind turbine) is proposed to analyze the mechanical behavior and also the computation time.
机译:本文讨论将多极杆系统保持在同心磁性齿轮中的多杆系统的结构性能。提出了该系统的简化分析磁性和机械模型,以便将其集成到用于风电应用中的磁性齿轮尺寸确定的多准则全局优化中。为此,考虑减少计算时间。定义了支撑杆子系统的几何形状,并提出了Q杆结构。磁研究基于麦克斯韦方程和子域方法,以确定可变的径向和切向磁载荷。力学研究基于具有一维模型确定的不同杆刚度的多体模型。还考虑了可变的径向和切向磁机械极靴负载(磁负载和重量)。提出了一个具有172个极靴的电磁齿轮(例如6兆瓦风力发电机)的示例,以分析机械性能以及计算时间。

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