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Optimum heating of thick plate

机译:厚板的最佳加热

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摘要

Five different methods for determining optimum fluid temperature changes during heating or cooling thick plate are examined. The first method presented in this paper is based on the discrete form of Duh-amel's integral. The method can be easily applied to bodies of complex shapes and is recommended for use, while three other methods: the Laplace transform, Burggraf analytical method, and space marching method can be applied to only a very limited number of optimum control problems. In the fifth approach, the optimum fluid temperature changes are approximated by a function with unknown parameters, which are determined using the least squares method. These five techniques were used to determine time changes of fluid temperature assuring linear increase of the slab wall temperature at the given location inside the body. No one approach is perfect. The optimum fluid temperature changes are burdened with a large uncertainty at the beginning of the heating process.
机译:检查了五种不同的方法,这些方法用于确定加热或冷却厚板期间的最佳流体温度变化。本文提出的第一种方法是基于Duh-amel积分的离散形式。该方法可以很容易地应用于复杂形状的物体并推荐使用,而其他三种方法:拉普拉斯变换,伯格格拉夫分析法和空间行进法只能应用于数量非常有限的最优控制问题。在第五种方法中,最佳流体温度变化通过未知参数的函数来近似,该参数使用最小二乘法确定。这五种技术用于确定流体温度的时间变化,以确保在体内给定位置的平板壁温度线性增加。没有一种方法是完美的。在加热过程开始时,最佳的流体温度变化会带来很大的不确定性。

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