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A mathematical model of a slab reheating furnace with radiative heat transfer and non-participating gaseous media

机译:具有辐射传热和无参与气态介质的板坯加热炉的数学模型

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摘要

A mathematical model of the reheating process of steel slabs in industrial fuel-fired furnaces is developed. The transient temperature field inside the slabs is computed by means of the Galerkin method. Radiative heat transfer inside the furnace constitutes boundary conditions that couple the dynamic subsystems of the slabs. Constraining the heat fluxes to piecewise linear, discontinuous signals furnishes a discrete-time state-space system. Conditions for an exponential decrease of the open-loop control error are derived. Measurements from an instrumented slab in the real system demonstrate the accuracy of the model. The simple and computationally inexpensive model is suitable for trajectory planning, optimization, and controller design.
机译:建立了工业燃料炉中钢坯再加热过程的数学模型。平板内部的瞬态温度场是通过Galerkin方法计算的。炉内的辐射热传递构成了边界条件,这些条件耦合了板坯的动态子系统。将热通量限制为分段线性,不连续信号可提供离散时间状态空间系统。得出了开环控制误差呈指数下降的条件。在实际系统中,从已测试的平板进行的测量证明了模型的准确性。简单且计算上便宜的模型适用于轨迹规划,优化和控制器设计。

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