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Numerical Simulation of Three-dimensional Temperature Distribution in the Supercharged Boiler Furnace

机译:增压锅炉炉膛内三维温度分布的数值模拟

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In this paper, the visualization of three-dimensional (3-D) temperature distributions in the supercharged boiler furnaces from radiative energy images captured by multiple charge-coupled device (CCD) cameras mounted around the furnace is studied numerically for the first time. The combustion of supercharged boiler is analyzed by structuring a full-scaled model and grid partition. The calculation of the radiative energy image formation is a fast algorithm based on the Monte Carlo method and the two-color temperature calculation method. For the inversion of the 3-D temperature distributions, a modified Tikhonov regularization method is used. The simulation results show that: even though the measurement error of the radiative energy images for the 3-D temperature distributions up to 0.12, the position of the reconstruction high-temperature zone is almost the same to the one of the simulation. The results indicate that the reconstruction quality is satisfactory, and the method can lead to a good visualization result.
机译:在本文中,首次对通过安装在炉子周围的多个电荷耦合器件(CCD)摄像机捕获的辐射能图像中的增压锅炉炉膛中的三维(3-D)温度分布进行了可视化研究。通过建立全尺寸模型和网格划分,分析了增压锅炉的燃烧情况。辐射能图像形成的计算是基于蒙特卡罗方法和双色温度计算方法的快速算法。对于3D温度分布的反演,使用了改进的Tikhonov正则化方法。仿真结果表明:即使3-D温度分布的辐射能图像的测量误差高达0.12,重建高温区的位置也几乎与仿真之一相同。结果表明,重建质量令人满意,该方法可以得到良好的可视化效果。

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