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首页> 外文期刊>Chemical Engineering Science >Analytical study of effects of finger-growth velocity on reaction characteristics of reactive miscible viscous fingering by using a convection-diffusion-reaction model
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Analytical study of effects of finger-growth velocity on reaction characteristics of reactive miscible viscous fingering by using a convection-diffusion-reaction model

机译:对流扩散反应模型分析手指生长速度对反应性混溶粘性指法反应特性的影响

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Reactive miscible viscous fingering occurs when a reactive and miscible less-viscous liquid displaces a more-viscous liquid. Effects of bulk finger-growth velocity on reaction characteristics of miscible viscous fingering with a chemical reaction were studied analytically by using a convection-diffusion-reaction model. The model assumes the existence of a distinct interface between both liquids, assumes the existence of a two-dimensional, steady, stagnated flow field in the less-viscous liquid, and assumes an infinite chemical reaction rate. The model was then used to determine the reaction characteristics, such as the location of the reaction surface and the profile of the product, as functions of the velocity and initial reactant concentrations. The results reveal that the effects of the velocity on the reaction characteristics can be divided into low-, intermediate-, and high-velocity regions. In the low-velocity region, the reaction characteristics strongly depend on the reactant concentrations. In the intermediate-velocity region, the dependence of the reaction characteristics on the reactant concentrations decreases with increasing velocity. In the high-velocity region, the reaction characteristics are nearly independent of the reactant concentrations. Experiments confirm the existence of these three velocity regions predicted by the model. (C) 2004 Published by Elsevier Ltd.
机译:当具有反应性和可混溶性的低粘度液体取代具有较高粘度的液体时,就会发生具有反应性的混溶性粘性指法。利用对流扩散反应模型分析研究了手指生长速度对混合粘性指状物化学反应反应特性的影响。该模型假设两种液体之间存在明显的界面,假设低粘度液体中存在二维的,稳定的,停滞的流场,并假设化学反应速率无限大。然后使用该模型确定反应速度,初始反应物浓度的函数,例如反应表面的位置和产物的轮廓等反应特性。结果表明,速度对反应特性的影响可分为低速,中速和高速区域。在低速区域,反应特性强烈取决于反应物浓度。在中速区域,反应特性对反应物浓度的依赖性随速度增加而降低。在高速区域中,反应特性几乎与反应物浓度无关。实验证实了模型预测的这三个速度区域的存在。 (C)2004由Elsevier Ltd.出版

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