用二次冷却控制连铸钢坯温度场

K. Ondrejkovic, P. Noga, L. Tkác, G. Hulkó, P. Bucek
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引用次数: 1

摘要

本文对连铸过程中钢坯温度场的控制进行了仿真研究。钢坯的冷却是由二冷区控制的,二冷区是一组水射流,分为独立的子区。用非线性偏微分方程描述了温度场在时间和空间上的演化。利用专用有限元软件ProCAST,对该方程进行了数值求解。介绍了以冷却水流量为输入,温度场为系统分布输出的集总输入和分布参数输出系统。从空间和时间两个方向解决了系统反馈中的控制综合问题。为了表示设定值变化期间的温度场,在DPS Blockset (the MathWorks的第三方软件产品)中添加了一个联合仿真接口。接口模块使您能够耦合ProCAST中的有限元仿真和Simulink中的控制方案。此功能为您带来了Simulink的全部功能,以扩展有限元仿真的功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control of billet temperature field by the secondary cooling in continuous casting of steel
The paper presents simulation study on control of temperature field of steel billet during continuous casting. The cooling of steel billet is controlled with secondary cooling zone - a set of water jets divided into independent subzones. The temperature field evolution in time and space is described by non-linear partial differential equation. The solution of this equation is obtained numerically, using specialized finite element software ProCAST. Lumped-input and distributed-parameter-output system (LDS) is introduced, with the inputs being cooling water flow rates and the temperature field being the system's distributed output. Control synthesis in the system's feedback is solved in space and time direction. To represent the temperature field during setpoint changes a co-simulation interface was added to the DPS Blockset (Third-Party software product of The MathWorks). The interface block enables you to couple a finite element simulation in ProCAST and control scheme in Simulink. This feature brings you the full power of Simulink to extend the capabilities of finite element simulation.
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