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Simulation study on the influence of ignition location and feeding temperature during powder free falling

机译:粉末自由下落期间点火位置和喂料温度影响的仿真研究

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This paper presents the findings on the influence of ignition positions at various feeding temperatures on pressure and temperature profiles in silo using computational fluid dynamics code, FLUENT. The RNG k-ε model is used to simulate the turbulence of the gas phase, and the species transport model was selected within the disperse phase model to enable the prediction of dust cloud combustion. The finite rate-eddy dissipation model was employed in the combustion model. The result shows that the pressure was decreased about 16% when the ignition location is located at the bottom of the silo compared to the ones at the middle. It was found that the ignition source would not induce a dust explosion when the feeding and surrounding temperatures are equal. Findings reported in this work enhanced understanding of the ignition sensitivity arising from dust-air mixtures during the silo filling operation.
机译:本文介绍了使用计算流体动力学代码,流畅的筒仓在筒仓压力和温度分布上的各种送料温度对点火位置影响的研究结果。 RNG K-ε模型用于模拟气相的湍流,并且在分散相模型内选择物种传输模型,以使得能够预测尘云燃烧。 有限速率涡流耗散模型在燃烧模型中使用。 结果表明,当点火位置位于筒仓的底部,与中间的底部位于筒仓底部时,压力降低了约16%。 发现点火源不会在喂食和周围温度相等时诱导粉尘爆炸。 在这项工作中报告的调查结果提高了在筒仓灌装操作期间对粉尘混合物产生的点火敏感性的理解。

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