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首页> 外文期刊>Combustion, Explosion, and Shock Waves >Computational Fluid Dynamics Modeling of Combustion of Synthetic Fuel of Thermochemical Heat Recuperation Systems
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Computational Fluid Dynamics Modeling of Combustion of Synthetic Fuel of Thermochemical Heat Recuperation Systems

机译:热化学热恢复系统合成燃料燃烧的计算流体动力学建模

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CFD modeling of the combustion of synthetic fuel formed in the systems of thermochemical recuperation of waste flue gas heat due to steam methane reforming was performed using the ANSYS Fluent software. Scientific justification and validation of the physicomathematical approaches involved the ANSYS Fluent for the problems of modeling the combustion of multicomponent hydrogen-containing gas mixtures. Numerical results were validated against experimental data. A visual comparison of the flame contours obtained by burning syngas at Reynolds numbers of 600, 800, and 1000 was performed. In all cases there is obvious convergence of the results. Change in the temperature of the fuel-air mixture at the entrance to the combustion chamber was found to have no significant effect on the temperature of the combustion products. The obtained results are of practical importance for the design of burner units of high-temperature plants with thermochemical heat recuperation.
机译:使用ANSYS流畅的软件进行蒸汽甲烷重整导致的废烟气体热量的热化学回收系统中形成的合成燃料燃烧的CFD建模。 科学的理由和验证物理化学方法涉及对模拟含有多组分含氢气体混合物燃烧问题的问题。 对实验数据验证了数值结果。 进行通过在600,800和1000的雷诺数燃烧合成气而获得的火焰轮廓的视觉比较。 在所有情况下,结果都有明显的收敛性。 发现对燃烧室入口处的燃料 - 空气混合物的温度变化对燃烧产物的温度没有显着影响。 获得的结果对于具有热化学热回收的高温植物燃烧器单元的设计具有实际重要性。

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