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Reconstruction of Three-dimensional Temperature Distribution with Radiative Image by Monte Carlo Method in Blast Furnace Raceway

机译:蒙特卡罗法用辐射图像重建三维温度分布

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This paper presented reconstruction of three-dimensional temperature distribution of raceway from radiative images based on Monte Carlo method and image processing techniques in the blast furnace. The Monte Carlo method was introduced to describe radiative heat transfer of raceway for its efficiency. Color CCD camera was used to obtain radiative information in visible spectrum of raceway. An efficient numerical inverse reconstruction model was established by the relationship between three-dimensional thermal radiation and two-dimensional radiative image. Because the reconstruction was an ill-posed inverse problem, a hybrid Tikhonov regularization method was used to determine the meaningful reconstruction. The numerical simulations were utilized for checking the validity of inverse reconstruction model before each experimental reconstruction. Experiment was done to reconstruct three-dimensional temperature distribution of 2500 m~(3) blast furnace raceway. Ultimately, this method could restore temperature distribution of the raceway effectively. Moreover, computational fluid dynamics (CFD) technology was applied to simulate combustion process and obtain temperature distribution of blast furnace raceway, which was compared with the reconstructed temperature distribution. All results show that the temperature distribution of raceway can be reconstructed reasonably using Monte Carlo method and image processing techniques.
机译:本文提出了基于蒙特卡罗方法和高炉图像处理技术的辐射图像三维滚道温度分布的重构方法。引入蒙特卡罗方法来描述滚道的辐射传热及其效率。彩色CCD摄像机用于获得在跑道可见光谱中的辐射信息。通过三维热辐射与二维辐射图像之间的关系,建立了高效的数值逆重构模型。由于重建是一个不适定的逆问题,因此使用了混合的Tikhonov正则化方法来确定有意义的重建。数值模拟用于在每次实验重建之前检查逆重建模型的有效性。通过实验重建了2500 m〜(3)高炉滚道的三维温度分布。最终,该方法可以有效地恢复滚道的温度分布。此外,应用计算流体动力学(CFD)技术模拟燃烧过程并获得高炉滚道的温度分布,并将其与重构的温度分布进行比较。所有结果表明,使用蒙特卡洛方法和图像处理技术可以合理地重建滚道的温度分布。

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