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A Simple FE-Inverse Heat Conduction Algorithm and its Application to the Determination of Surface Heat Flux During Water Jet Cooling

机译:一种简单的Fe-逆导热算法及其在水喷射冷却过程中测定表面热通量的应用

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A finite element based inverse heat transfer analysis algorithm is developed and implemented into a 2D FF, heat transfer analysis program to study water-cooling of hot steel plates by jet impingement on runout tables. In this method, the least-squares technique with sequential function specification and regularization is presented and iterative technique is adopted to reduce the CPU time while maintaining accuracy. Parametric studies have been first performed with abrupt heat flux inputs (triangular and impulse-like heat fluxes) simulating those that occur in runout table applications. Results show that the fluctuation of inversely calculated heat flux due to random measurement errors may be damped by increasing the number of future steps and regularization parameter. The developed code is used to determine the heat flux during water jet cooling. Analysis data and comparisons with other resources are provided. The method and procedure presented are proved to be robust and reliable and have acceptable level of accuracy.
机译:基于有限元的反热传递分析算法和实施到2D FF,传热分析程序中,通过喷射跳动表研究热钢板的水冷。在该方法中,提出了具有顺序函数规范和正则化的最小二乘技术,并采用迭代技术来减少CPU时间,同时保持精度。已经首先使用突然的热通量输入(三角形和脉冲和脉冲热量)进行参数研究,模拟跳动表应用中发生的那些。结果表明,由于随机测量误差引起的反向计算热通量的波动可以通过增加未来步骤和正则化参数的数量来阻尼。开发的代码用于确定水喷射冷却过程中的热通量。提供了与其他资源的分析数据和比较。所提出的方法和程序被证明是坚固可靠的,并且具有可接受的准确性水平。

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