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首页> 外文期刊>International Journal of Heat and Mass Transfer >Analysis of catalytic heat transfer for a multi-species gas mixture
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Analysis of catalytic heat transfer for a multi-species gas mixture

机译:多物种气体混合物催化传热分析

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Stagnation point catalytic heat transfer model for a multi-species gas mixture has been developed in this work. The analysis extends the existing tertiary gas mixture catalytic model that assumes thermochemical equilibrium at the edge of a chemically frozen boundary layer. The catalytic heat transfer is computed numerically by solving the governing equations with matrix diagonalization and shooting methods. The present model is applied to compute the heat transfer for both tertiary gas mixture O-O-2-Ar and quinary gas mixture O-O-2-N-N-2-Ar. For the case of the tertiary gas mixture, the present model predicts in the finite-catalytic region, the stagnation-point heat transfer due to recombination is similar with that of the existing models of Goulard and Park. In the highly-catalytic region, however, noticeable differences are observed owing to how the species mass fraction at the wall is computed. Unlike the Goulard approach treating the oxygen and nitrogen as a single recombination efficiency, in the case of the quinary gas mixture, the oxygen recombination efficiency needs to be decoupled with that of nitrogen. The present global model for the tertiary gas mixture is also compared with the Computational Fluid Dynamics (CFD) approach. The results suggest that the present model predicts a similar diffusive stagnation heat transfer to that of the CFD approach, within some acceptable range, when a zero backward reaction rate constant is assumed in the chemical reaction modeling. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项工作中开发了多种气体混合物的停滞点催化传热模型。该分析延伸了现有的叔气混合物催化模型,其假设在化学冻结边界层边缘处的热化学平衡。通过用基质对角化和拍摄方法求解控制方程来数量地计算催化传热。应用本模型以计算叔气混合物O-O-2-AR和静气混合物O-O-2-N-N-N-2-AR的传热。对于叔汽油混合物的情况下,本模型预测有限催化区,由于重组引起的滞留点热传递与现有的古拉德和公园的模型相似。然而,在高催化区域中,由于如何计算壁的物质质量分数如何观察到明显的差异。与将氧气和氮的古尔拉德方法不同,在静态气体混合物的情况下,氧气重组效率需要与氮气分离。与计算流体动力学(CFD)方法进行比较,本发明的叔汽油混合物的全局模型。结果表明,当在化学反应建模中假设零反应反应速率常数时,本模型在一些可接受的范围内预测与CFD方法的相似的扩散滞销热传递。 (c)2019 Elsevier Ltd.保留所有权利。

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