首页> 外文期刊>ISIJ international >Modeling and Validation of the Radiative Heat Transfer in an Electric Arc Furnace
【24h】

Modeling and Validation of the Radiative Heat Transfer in an Electric Arc Furnace

机译:电弧炉辐射传热的建模与验证

获取原文
       

摘要

This paper presents an approach to the mathematical modeling and validation of the radiative heat-transfer processes in an electric arc furnace (EAF). This radiative heat transfer represents an important part of the complete EAF model, which is further composed of electrical, hydraulic, thermal, chemical and mass-transfer sub-models. These have already been addressed in our previous publications. It is well known that during the operation of an EAF all three types of heat transfer (conductive, convective and radiative) are present; however, a great portion of the heat is transferred between the surfaces by means of radiation. The model presented in this work uses a simplified internal geometry of the EAF to represent the relations between the defined EAF zones and is developed in accordance with fundamental thermodynamic laws. The parameters of the model were fitted using the geometrical relations in the EAF; theoretically, using the conclusions from different studies involved in EAF modeling; and experimentally, using the measured temperatures on the furnace roof and the water-cooled panels. Since the radiative heat mostly represents a negative impact on the furnace roof, walls and linings, the obtained model represents an important part of the complete EAF. The presented results show satisfactory levels of similarity between the measured and simulated temperatures of the roof and water-cooled panels, which suggest that the presented model is relatively accurate and follows the fundamental laws of thermodynamics. Possessing such a model is of special importance when enhancing the EAF process using different optimization techniques, since the radiative impacts on the furnace need to be taken into the account in order to maintain or reduce the wear on the furnace lining.
机译:本文提出了一种对电弧炉(EAF)中的辐射传热过程进行数学建模和验证的方法。辐射传热是整个EAF模型的重要组成部分,该模型进一步由电,液压,热,化学和质量传递子模型组成。这些已经在我们以前的出版物中得到了解决。众所周知,在电弧炉运行期间,会存在所有三种类型的热传递(传导,对流和辐射)。然而,大部分热量通过辐射在表面之间传递。在这项工作中提出的模型使用EAF的简化内部几何形状来表示定义的EAF区域之间的关系,并且是根据基本热力学定律开发的。使用EAF中的几何关系拟合模型的参数;从理论上讲,使用来自EAF建模的不同研究得出的结论;在实验上,使用炉顶和水冷板上的测得温度。由于辐射热主要代表对炉顶,炉壁和炉衬的负面影响,因此获得的模型代表了整个电弧炉的重要组成部分。呈现的结果显示了在屋顶和水冷板的测量温度和模拟温度之间令人满意的相似度,这表明呈现的模型相对准确,并且遵循热力学的基本定律。当使用不同的优化技术增强EAF工艺时,拥有这种模型尤为重要,因为需要考虑对炉子的辐射影响,以维持或减少炉子衬里的磨损。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号