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首页> 外文期刊>Petroleum Chemistry >3D CFD Modeling and Optimization of a Cylindrical Porous Bed Reactor for Hydrogen Production using Steam Reforming of Methane
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3D CFD Modeling and Optimization of a Cylindrical Porous Bed Reactor for Hydrogen Production using Steam Reforming of Methane

机译:甲烷蒸汽重整的汽油生产圆柱形多孔床反应器的3D CFD建模与优化

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摘要

Steam Reforming of Methane, which converts natural gas into products with higher economic value in the presence of a suitable catalyst bed reformer, is the most economical method for hydrogen production in petroleum refineries. This study focuses on developing a Computational Fluid Dynamics (CFD) model of a steam methane reformer. To this purpose, a steady-state heterogeneous 3 Dimensional model that was composed of mass, species, momentum, and energy balances was developed. It compares two different geometrical porous bed reformers with different heating tube configurations for better heat transfer and reforming. Effects of heating tubes inlet temperature, the ratio of inlet CH4/H2O, and the configuration of the heating tube are studied and optimized. The results show that conversion of methane will be promoted by increasing inlet temperature of the heating tube as well as the number of heating tubes in the reformer when CH4/H2O ratio is about 0.2. In this platform, the conversion of methane is not affected by the porosity below 0.35. Also, the simulations results are shown to be in agreement with typical data reported in the literature. So, this study can be used to develop industrial natural gas reformers.
机译:甲烷蒸汽重整是炼油厂最经济的制氢方法,它在合适的催化剂床重整器的作用下将天然气转化为具有较高经济价值的产品。本研究的重点是开发蒸汽甲烷转化炉的计算流体动力学(CFD)模型。为此,开发了一个由质量、物种、动量和能量平衡组成的稳态非均匀三维模型。比较了两种不同几何结构、不同加热管结构的多孔床转化炉,以获得更好的传热和转化效果。研究并优化了加热管入口温度、CH4/H2O入口比和加热管结构对加热效果的影响。结果表明,当CH4/H2O比在0.2左右时,提高加热管入口温度和增加加热管数量可以促进甲烷的转化。在这个平台上,甲烷的转化率不受0.35以下孔隙度的影响。此外,模拟结果与文献报道的典型数据一致。因此,本研究可用于开发工业天然气转化炉。

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