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Effect of design parameters on performance of a top fired natural gas reformer

机译:设计参数对顶燃天然气重整炉性能的影响

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A three-dimensional zone method was applied to an industrial fired heater of methane steam reforming reactor. Radiation heat transfer from all gases and surfaces inside the furnace was considered. Results from previous work and data of an industrial top fired furnace were used to validate the model. A maximum temperature in external reaction tube skin was obtained at about one third of the reactor length from top in the industrial furnace. Effect of important parameters such as emissivity, extinction coefficient, heat release pattern and flame angle on performance of the fired heater are presented. It was found that decreasing the extinction coefficients of combustion gases by 25% (from about 0.20 to 0.15) caused 2.6% rise in temperature of heat sink surfaces. It was demonstrated that the three-dimensional zone method developed in this work is simple, easy and flexible for modeling and simulation of the fired heaters.
机译:将三维区域方法应用于甲烷蒸汽重整反应器的工业燃烧加热器。考虑了炉内所有气体和表面的辐射传热。以前的工作结果和工业顶炉的数据被用来验证该模型。在从工业炉顶部起的反应器长度的大约三分之一处,获得了外部反应管表皮的最高温度。给出了诸如发射率,消光系数,放热模式和火焰角度等重要参数对燃烧加热器性能的影响。已经发现,将燃烧气体的消光系数降低25%(从约0.20到0.15)会导致散热器表面温度升高2.6%。事实证明,在这项工作中开发的三维区域方法对于燃烧加热器的建模和仿真是简单,容易和灵活的。

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