Induction Heating of the Large-Size Installations. Part 1. Study on the Power Frequency Dependence of the Heating Efficiency

F. Tarasov, E. Shmakov
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Abstract

The paper is concerned with numerical study of parameters of the magnetic system for induction heating of the large-size installations. The paper is included in a papers series concerning development of the installation for maintaining the specified pressing tool temperature for a long time period, more than 24 hours. Induction heating is the basic heating mechanism. Studies of the energy parameters depending on the power frequency are presented in this section of the paper. Determination of the basic frequency dependencies of efficiency and heat release is the objective of the paper. The studies were performed using numerical modeling in a three-dimensional formulation by the finite element method. A parametric study was carried out in which the frequency of the supply current was changed from 50 Hz to 60 kHz. During the study, the dependences of total electromagnetic power, volumetric loss density and efficiency on frequency were obtained. It was found that the optimal frequency for the most efficient induction heating process is 10 kHz.
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大型装置的感应加热。第1部分。加热效率与工频关系的研究
本文对大型装置感应加热磁系统参数进行了数值研究。该论文是关于长时间(超过24小时)保持规定的冲压工具温度的装置开发的一系列论文中的一篇。感应加热是最基本的加热机制。本文主要研究了功率参数随工频的变化规律。确定效率和热量释放的基本频率依赖关系是本文的目标。研究采用有限元法在三维公式中进行数值模拟。进行了参数化研究,其中电源电流的频率从50赫兹改变为60千赫。在研究过程中,得到了总电磁功率、体积损耗密度和效率随频率的变化规律。研究发现,最有效的感应加热过程的最佳频率为10 kHz。
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