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首页> 外文期刊>International Journal of Heat and Mass Transfer >Parametric study of recuperative VOC oxidation reactor with porous media
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Parametric study of recuperative VOC oxidation reactor with porous media

机译:多孔介质换热VOC氧化反应器的参数研究

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摘要

Numerical study of volatile organic compounds (VOC) oxidation reactor consisting of two coaxial tubes, filled with inert porous media is performed. Influence of incoming gas flux, adiabatic temperature of gas combustion, reaction rate constant, diameter of porous body particles, reactor size and heat losses on maximal temperature of reactor, recuperation efficiency, combustion front position is investigated. It is shown that maximum temperature and recuperation efficiency of reactor has extremum in the field of incoming gas flow rate and porous body particle size parameters (for simulated configuration of reactor maximum corresponds to U_G ~ 2 m/s and d_0 ~ 6 mm). Numerical simulation shows non-monotonous character of maximal temperature and recuperation efficiency dependence from side heat losses of reactor. The obtained results can be used for construction optimization of practical VOC oxidation reactors.
机译:进行了挥发性有机化合物(VOC)氧化反应器的数值研究,该反应器由两个同轴管组成,填充有惰性多孔介质。研究了进气流量,气体燃烧绝热温度,反应速率常数,多孔体颗粒直径,反应器尺寸和热损失对反应器最高温度,换热效率,燃烧前沿的影响。结果表明,反应器的最高温度和换热效率在进气流量和多孔体粒径参数方面都具有极高的优势(对于模拟配置的反应器,最大值对应于U_G〜2 m / s和d_0〜6 mm)。数值模拟表明最大温度的非单调性和反应器侧热损失对换热效率的依赖性。所得结果可用于实际VOC氧化反应器的结构优化。

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