Mechanism and application of an online intelligent evaluation model for energy consumption of a reheating furnace

被引:0
|
作者
Xiang-jun Bao
Jing Xu
Guang Chen
Xu Chen
Hong-guang Zhang
Yi-ming Shen
Wei Zhai
机构
[1] Anhui University of Technology,Department of Thermal Energy, School of Energy and Environment
[2] Anhui University of Technology,Department of Metallurgical Engineering, School of Energy and Environment
[3] Anhui University of Technology,Department of Construction and Environmental Engineering, School of Architectural Engineering
[4] Ma’anshan Iron and Steel Co.,undefined
[5] Ltd.,undefined
关键词
Online intelligent evaluation; Model mechanism; Contribution; Data reconstruction;
D O I
暂无
中图分类号
学科分类号
摘要
An online model was proposed to identify the reasons behind changes in the energy consumption of the reheating furnace of a steel processing plant. The heat conversion of the furnace was analyzed and integrated with the fuel consumption of the furnace to obtain a model of the energy consumption. Combined with the mechanism analysis, the basic parameters affecting energy consumption were determined, and four key influencing factors were obtained: furnace output, furnace charging temperature, furnace tapping temperature, and steel type. The specific calculation method of the contribution of each influencing factor was derived to define the conditions of the baseline energy consumption, while the online data were used to calculate the energy value and the actual performance value of the baseline energy consumption. The contribution of each influencing factor was determined through normalization. The cloud platform was used for database reconstruction and programming to realize the online intelligent evaluation of the energy consumption of the reheating furnace. Finally, a case study of the evaluation of the practical energy consumption of a steel rolling furnace in a steel plant was presented. The intelligent evaluation results were quantified and displayed online, and the performance of the system in reducing production line energy consumption was demonstrated.
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页码:102 / 111
页数:9
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