基于ANSYS-Maxwell的同步发电机有限元设计与分析

Yildirim Özüpak
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引用次数: 0

摘要

把机械能转换成电能的最基本的电机是同步电机。同步电机可以运行在高速和低速为不同的发电厂。在系统规划方面,重要的是检查这些周期中机器在空闲和可变负载条件下的运行特性。发电机作为发电厂汽轮机的基本组成部分,其效率的高低在设计时就显得尤为重要。在设计同步发电机时,必须对许多相互兼容的参数进行合理安排。发电机的效率可以通过改变设计中非常重要的参数而有很大的变化。本文利用ANSYS-Maxwell-Rmxprt集成设计仿真软件,基于有限元法(FEM)对某同步发电机的特性参数进行了分析、设计和分析。本文得到了三相同步电机的效率、感应电压、相电流和电压以及输出转矩等参数随电角的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Analysis of a Synchronous Generator Using Finite Element Method Based ANSYS-Maxwell
The most basic electrical machine that converts mechanical energy into electrical energy is synchronous machines. Synchronous machines can be operated at high speeds and low speeds for different power plants. In terms of system planning, it is important to examine the operating characteristics of the machine at idle and variable load conditions in these cycles. It is very important that generators, which are the basic components of turbines in power plants, have high efficiency when they are designed. While synchronous generators are being designed, many parameters that are compatible with each other must be arranged in an appropriate way. The efficiency of generators can vary greatly by changing very important parameters in the design. In this study, the analysis, design and analysis of the characteristic parameters of a synchronous generator are carried out with the ANSYS-Maxwell-Rmxprt integrated design and simulation program based on Finite Element Method (FEM). In this paper, parameters such as efficiency, induced voltage, phase currents and voltages and output torque of a three-phase synchronous machine were obtained depending on the electrical angle change.
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