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Numerical studies of heterogeneous reaction in stagnation flows using one-dimensional and two-dimensional Cartesian models

机译:一维和二维笛卡尔模型对滞流中非均相反应的数值研究

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Flow over a thin strip is one of the major experimental configurations in the study of catalytic combustion. 1D laminar stagnation-flow models are generally employed to investigate the catalytic combustion characteristics in this experimental configuration. In this study, a 2D Cartesian model is developed to examine the conditions under which 1D models are applicable. The results show that the 1D model is only appropriate in the experimental configurations with a length-to-width ratio less than 1 to 3 (depending on the flow conditions). The 1D model failed because of the neglecting of transverse diffusive mass transfer (at Re < 30) and of the oversimplified convective mass transfer (at Re > 60). The calculations of the 1D and 2D models are also compared against the OH measurements performed in a typical stagnation-flow reactor with a length-to-width ratio of 16. The results show that the computations of the 2D model are in better agreement with the experimental data.
机译:薄带上的流动是催化燃烧研究中的主要实验配置之一。通常使用一维层流滞流模型来研究此实验配置中的催化燃烧特性。在这项研究中,开发了2D笛卡尔模型以检查1D模型适用的条件。结果表明,一维模型仅适用于长宽比小于1至3(取决于流动条件)的实验配置。一维模型失败是因为忽略了横向扩散传质(在Re <30时)和过分简化的对流传质(在Re> 60时)。还将1D和2D模型的计算结果与在典型的长宽比为16的滞流反应器中进行的OH测量进行了比较。结果表明,二维模型的计算结果与实验数据。

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