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Simulation of non-catalytic partial oxidation and scale-up of natural gas reformer

机译:天然气重整装置非催化部分氧化和放大的模拟

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Computational Fluid Dynamics (CFD) has been applied in the simulation of non-catalytic partial oxidation (NC-POX) of methane and scale up of natural gas reformers. An industrial reference reformer and a large scale virtual prototype were considered in this study. Benchmark simulations were performed using the presumed PDF model and the Eddy-Dissipation-Concept (EDC) model, respectively. The results show that the PDF model is sufficient and more suitable for an engineering level estimation and trend prediction of the reactions in a NC-POX reformer. Simulations of a large scale prototype reformer were performed using the PDF approach. The predicted peak gas temperature and its relation to the burner parameters were examined numerically. The results suggest that decreasing the temperature of input streams does not necessarily delay the ignition of methane/oxygen mixture. It is verified that a relatively small nozzle can effectively shift the flame downward, and generate a strong recycle flow field in the reformer.
机译:计算流体动力学(CFD)已用于模拟甲烷的非催化部分氧化(NC-POX)和扩大天然气重整器的规模。在这项研究中考虑了工业参考重整器和大规模的虚拟原型。分别使用假定的PDF模型和Eddy-Dissipation-Concept(EDC)模型进行基准模拟。结果表明,PDF模型是足够的,更适合于NC-POX重整器中反应的工程水平估计和趋势预测。使用PDF方法对大型原型重整器进行了仿真。对预计的峰值气体温度及其与燃烧器参数的关系进行了数值检查。结果表明,降低输入物流的温度并不一定会延迟甲烷/氧气混合物的着火。可以证明,较小的喷嘴可以有效地使火焰向下移动,并在重整器中产生强大的循环流场。

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