首页> 外文会议>ASME international mechanical engineering congress and exposition >OPTIMIZING PULSE COMBUSTION PARAMETERS IN CARBON ANODE BAKING FURNACES FOR ALUMINUM PRODUCTION
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OPTIMIZING PULSE COMBUSTION PARAMETERS IN CARBON ANODE BAKING FURNACES FOR ALUMINUM PRODUCTION

机译:铝制碳阳极焙烧炉中脉冲燃烧参数的优化

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Pulsating flame jets have been widely used in open-top carbon anode baking furnaces for aluminum electrolysis. Reducing energy consumption and pollutant emissions are still major challenges in baking (heat-treatment) carbon anode blocks. It is also of immense significance to bake all the anodes uniformly irrespective of their position in the furnace. Baking homogeneity can be enhanced noticeably by optimizing anode baking operational, geometrical, and physical parameters. In the present study, CFD simulations are combined with a response surface methodology to investigate and optimize the effects of pulse pressure, pulse frequency, and mainstream inlet oxygen concentration and mainstream inlet temperature. Two-levels half fractional factorial design with a center point is employed. It is perceived that pulse combustion with short pulse time and high momentum results in significant enhancement of the anode baking furnace energy efficiency. The temperature homogeneity is also significantly improved. It is found that the oxygen concentration is statistically the most significant parameter on NOx and soot formations, followed by the fuel flow rate. For NOx formation, air inlet oxygen concentration has a strong interaction with pulse duration. Coupling CFD models with the response surface methodologies demonstrated great potential in multi-objective optimization of the anode baking process with enhanced energy efficiency and baking uniformity.
机译:脉动火焰喷射器已广泛用于铝电解的敞顶式碳阳极烘烤炉中。减少能耗和污染物排放仍然是烘烤(热处理)碳阳极块的主要挑战。无论阳极在炉中的位置如何,均等地烘烤所有阳极也具有巨大的意义。通过优化阳极烘烤的运行参数,几何参数和物理参数,可以显着提高烘烤均匀性。在本研究中,CFD模拟与响应面方法相结合,以研究和优化脉冲压力,脉冲频率以及主流入口氧气浓度和主流入口温度的影响。采用具有中心点的两级半分数阶乘设计。可以看出,短脉冲时间和高动量的脉冲燃烧导致阳极焙烧炉能量效率的显着提高。温度均匀性也显着提高。发现氧浓度在统计学上是NOx和烟灰形成的最重要参数,其次是燃料流速。对于NOx的形成,进气口的氧气浓度与脉冲持续时间具有很强的相互作用。 CFD模型与响应面方法的耦合显示了在阳极烘烤工艺的多目标优化中巨大的潜力,其具有提高的能源效率和烘烤均匀性。

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