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Global and distributed torque calculations using the CDSA approach

机译:使用CDSA方法进行全局和分布式扭矩计算

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Accurate force and torque calculations are fundamental to being able to predict the operation of an electromechanical device or system. The Maxwell stress tensor and the virtual work principle are the two major theories for force and torque calculation. However, if local distributions of torque are needed to couple to structural and vibration analyses, the conventional Maxwell stress approach cannot provide this easily. A recently developed approach based on sensitivity analysis has the capability to deliver local stress and torque as well as accurate global results. In addition, this approach divides the total torque into different components which are essential to the design of electrical devices. This paper includes several numerical examples of torque calculations of different electrical machines. The results are verified by a commercial software package using the Maxwell stress based force calculation.
机译:准确的力和扭矩计算对于能够预测机电设备或系统的运行至关重要。麦克斯韦应力张量和虚拟工作原理是力和扭矩计算的两个主要理论。但是,如果需要将扭矩的局部分布耦合到结构和振动分析,则常规的麦克斯韦应力方法无法轻松地实现这一点。最近基于灵敏度分析开发的方法能够传递局部应力和扭矩以及准确的整体结果。另外,这种方法将总扭矩分为不同的部分,这对于电气设备的设计至关重要。本文包括几个不同电机转矩计算的数值示例。商用软件包使用基于麦克斯韦应力的力计算来验证结果。

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