详细信息
全氢罩式炉钢卷在线温度跟踪模型
ON-LINE TEMPERATURE TRACKING MODEL FOR COIL ANNEALING PROCESS IN THE FULL-HYDROGEN BELL-TYPE FURNACE
文献类型:期刊文献
中文题名:全氢罩式炉钢卷在线温度跟踪模型
英文题名:ON-LINE TEMPERATURE TRACKING MODEL FOR COIL ANNEALING PROCESS IN THE FULL-HYDROGEN BELL-TYPE FURNACE
作者:刘华飞[1];邢改兰[2];董刚[1];向顺华[1];柴阳宏[3]
机构:[1]宝山钢铁股份有限公司,上海201900;[2]华东理工大学机械与动力工程学院,上海200237;[3]宝信软件股份有限公司,上海201900
年份:2009
卷号:18
期号:1
起止页码:36
中文期刊名:矿冶
外文期刊名:Mining And Metallurgy
收录:CSTPCD;;Scopus
语种:中文
中文关键词:数学模型;罩式炉;温度跟踪;钢卷退火
外文关键词:mathematical model; bell-type furnace; temperature tracing; coil annealing
摘要:建立了以温度跟踪为目的的全氢罩式炉钢卷退火过程在线数学模型。采用二维轴对称非稳态导热方程描述钢卷内部传热,边界条件由气氛温度检测值给定。偏微分方程采用有限容积法离散,离散方程采用强隐型算法加速求解,在20s内能完成46个炉台的计算。埋偶试验验证了模型的合理性和准确性,冷热点温度的计算值与测量值偏差在4%左右。温度跟踪系统投入运行后,优化了保温时间,钢卷机械性能符合要求。
A on-line mathematical model for tracing coil temperature of the bell-type furnace is established based on the two-dimensional, axisymmetric, transient heat conduction equation. The boundary conditions are specified by the online atmosphere gas temperature. The partial differential equation is discretized by Finite Volume Method (FVM). The strongly implicit procedure is employed to solve the resulting algebraic equations. The solution process of 46 annealing bases is completed within 20 secs. The buried thermocouple test is conducted to verify the accuracy and reliability of the on-line model. The measured data are compared with the calculated values and derivations observed within 4 %. The practical application shows that the proposed modal can optimize the soaking time and ensure good mechanical behavior of the product.
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