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New form for reduced modeling of soot oxidation: Accounting for multi-site kinetics and surface reactivity

机译:减少烟灰氧化建模的新形式:考虑到多位动力学和表面反应性

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New formulation is introduced to model surface oxidation of soot particles. In the new development, the surface is represented by an arbitrary number of reactive sites and their physically-founded transformations. The latter are combined and integrated with gas-phase and particle-dynamics models. The surface reaction model defines two state properties and establishes a structural relationship between them that guides evolution of the surface. This new model form for the surface-chemistry led to close reproduction of shock-initiated oxidation of soot: CO profiles in two experiments performed at substantially different temperatures, 1990 and 2780 K, as well as CO production rates over a wide range of temperatures, 1652-3130K, all without employing the parameter-a empiricism of the previous model formulation. (C) 2018 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:引入了新的配方来模拟烟尘颗粒的表面氧化。在新的开发中,该表面由任意数量的反应位及其物理基础上的转变表示。后者与气相和粒子动力学模型结合并集成在一起。表面反应模型定义了两个状态属性,并在它们之间建立了结构关系,以指导表面演化。这种新的表面化学模型形式导致在1990年和2780 K的不同温度下进行的两个实验中,烟灰的冲击引发氧化的紧密复制:CO曲线以及在很宽的温度范围内产生的CO速率, 1652-3130K,都没有采用参数-先前模型公式的经验主义。 (C)2018年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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