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Coupled Electromagnetic, Structural-Dynamic, and Acoustic Simulation of an Induction Furnace

机译:感应炉的电磁,结构动态和声耦合模拟

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摘要

Induction furnaces for melting metals are well understood and optimized electromagnetically. New challenges arise, however, when regarding the whole device. Especially the vibrations and the acoustic noise are of importance, as the frequency of operation and the rated power of the devices are rising quickly. Since the vibrations are a result of the electromagnetic forces, a coupled simulation is required that regards all relevant effects. In this paper, the methods for the electromagnetic, structural-dynamic and acoustic simulations are presented as well as the coupling procedures. In the structural-dynamic part, a fluid-structure-interaction is used to regard the effect of the liquid melt.
机译:众所周知,用于熔化金属的感应炉在电磁方面得到了优化。然而,当涉及整个设备时,出现了新的挑战。随着设备的工作频率和额定功率迅速提高,振动和声音噪声尤为重要。由于振动是电磁力的结果,因此需要考虑所有相关影响的耦合模拟。本文介绍了电磁,结构动力学和声学仿真的方法以及耦合程序。在结构动力学部分中,使用流固耦合来考虑液体熔体的影响。

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