Thermal Modelling and Analysis of A 10HP Induction Machine Using the Lumped Parameter Approach

Oti S.Ejiofor, Awah Chukwemeka, Chibuzo Joseph Nnonyelu, Ogbonnaya I.Okoro
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引用次数: 1

Abstract

The essence of this research work is to develop a thermal model for an induction machine that will enable the prediction of temperature in different parts of the machine. This is very important first to the manufacturer or designer of an induction machine because with these predictions one can decide on the insulation class limits the machine belongs to. Also modern trends in the construction of machines is moving in the direction of making machines with reduced weights, costs and increased efficiency. In order to achieve this, the thermal analysis becomes very crucial in deciding on what types of insulators and other materials that would be used to make these machines. In industries, the knowledge of the thermal limits of machines if well utilized increases the life span of the machines and reduces downtime; thereby increasing production and profit. Specifically, this paper (i) predicted the temperature limits of the induction machine and its components, (ii) developed an accurate thermal model for an induction machine, (iii) predicted the temperature in different parts of the induction machine using the thermal model and software program and lastly (iv) investigated how the machine symmetry is affected by the nodal configuration.
基于集总参数法的10HP感应电机热建模与分析
本研究工作的实质是开发一种感应电机的热模型,使其能够预测机器不同部位的温度。这对感应电机的制造商或设计师来说是非常重要的,因为有了这些预测,就可以决定机器所属的绝缘等级限制。此外,现代机械制造的趋势正朝着减轻重量、降低成本和提高效率的方向发展。为了实现这一目标,热分析在决定使用何种类型的绝缘体和其他材料来制造这些机器时变得非常关键。在工业中,如果充分利用机器的热极限知识,可以延长机器的使用寿命并减少停机时间;从而提高产量和利润。具体而言,本文(i)预测了感应电机及其部件的温度极限,(ii)建立了感应电机的精确热模型,(iii)使用热模型和软件程序预测了感应电机不同部位的温度,最后(iv)研究了节点配置对机器对称性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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