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While coefficient of heat transfer presumption manner and the cooling control manner null, in water cooling processing

机译:在水冷却处理中传热系数推定方式和冷却控制方式无效的情况下

摘要

PPROBLEM TO BE SOLVED: To obtain the temperature control having high accuracy by accurately estimating a heat transfer coefficient of a steel plate performing water-cooling treatment in a water-cooling process on-line. PSOLUTION: To the steel plate after passing through the water-cooling process, the steel plate temperature during water-cooling and after completing the water-cooling are calculated with the heat transfer calculation by inputting the surface temperature at the inlet side and the outlet side of the water-cooling process, a plate thickness, a plate width, a shifting speed, cooling-water temperature and cooling-water quantity density and the accurate heat transfer coefficient is estimated by using a searching method such as a simulated-annealing method to correct the heat transfer coefficient so that the difference between the above calculated steel plate temperature and the practically measured steel plate temperature becomes little. The optimum water-cooling condition is decided by using the obtained heat transfer coefficient, and repeatedly calculating the steel plate temperature while changing the water-cooling condition. PCOPYRIGHT: (C)2004,JPO&NCIPI
机译:

要解决的问题:通过准确地估计在线进行水冷却处理中进行水冷却处理的钢板的传热系数,从而获得具有高精度的温度控制。

解决方案:经过水冷过程后的钢板,通过输入入口处的表面温度并通过传热计算,计算出水冷过程中和水冷完成后的钢板温度。水冷却过程的出口侧,板厚,板宽,移动速度,冷却水温度和冷却水量密度以及准确的传热系数是通过使用诸如模拟的搜索方法估算的,退火方法,以校正传热系数,以使上述计算出的钢板温度与实际测量的钢板温度之间的差异变小。通过使用所获得的传热系数,并在改变水冷条件的同时反复计算钢板温度,来确定最佳的水冷条件。

版权:(C)2004,日本特许厅和日本国家唱片公司

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