硅铁矿热炉多物理场耦合模拟热-应力分析

  • 摘要: 为了提升矿热炉结构的力学与热力学性能,针对矿热炉烟道结构热应力集中与流动不均导致的效率低下问题,本文建立了包含炉体、电极、炉衬及烟道的矿热炉三维模型,运用 ANSYS软件开展热-应力多物理场耦合仿真,并结合模型试验进行缩比研究。仿真与试验结果表明:优化前矿热炉烟道温度衰减明显,炉衬存在应力集中;经结构优化后,烟道末端温度提升14%,温度分布更均匀,炉体应力应变状况得到改善,余热回收效率显著提高。研究成果为矿热炉结构优化、节能降耗及安全运行提供了科学依据。

     

    Abstract: In order to improve the mechanical and thermodynamic properties of the submerged arc furnace structure, in order to solve the problem of low efficiency caused by the concentration of thermal stress and uneven flow of the submerged arc furnace flue structure, a three-dimensional model of the submerged arc furnace including the furnace body, electrode, furnace lining and flue is established, and the thermal-stress multiphysics coupling simulation is carried out by ANSYS software, and the scaling is studied in combination with the model test. The simulation and test results show that the temperature attenuation of the flue of the submerged arc furnace before optimization is obvious, and there is a stress concentration in the furnace lining. After structural optimization, the temperature at the end of the flue is increased by 14%, the temperature distribution is more uniform, the stress and strain condition of the furnace body is improved, and the waste heat recovery efficiency is significantly improved. The research results provide a scientific basis for the optimization of submerged arc furnace structure, energy saving and consumption reduction and safe operation.

     

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