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Toward Accommodating Realistic Fuel Chemistry In Large-scale Computations

机译:致力于在大规模计算中适应现实的燃料化学

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The need and prospect of incorporating realistic fuel chemistry in large-scale simulations of combustion phenomena and combustor performance are reviewed. The review first demonstrates the intricacies of chemical kinetics in homogeneous and diffusive systems, and emphasizes the essential importance of the comprehensiveness of chemical fidelity for mechanisms at the detailed and reduced levels. A systematic approach towards developing detailed reaction mechanisms is then outlined, followed by an extensive discussion on the development of reduced mechanisms and the associated strategies towards facilitated computation. Topics covered include skeletal reduction especially through directed relation graph; time-scale reduction based on the concepts of quasi-steady species enabled through computational singular perturbation; the lumping of isomers and of species with similar diffusivities; on-the-fly stiffness removal; the relative merits of implicit versus explicit solvers; and computation cost minimization achieved through tabulation and the judicious re-sequencing of the computational steps in arithmetic evaluations. Examples are given for laminar flames and direct numerical simulations of turbulent combustion to demonstrate the utility of the integrated strategy and the component methods in incorporating realistic chemistry of practical fuels in large-scale simulations, recognizing that the detailed mechanisms of these fuels may consist of hundreds to thousands of species and thousands to tens of thousands of reactions. Directions for further research are suggested.
机译:综述了在燃烧现象和燃烧器性能的大规模模拟中纳入现实燃料化学的需求和前景。该综述首先证明了均相和扩散系统中化学动力学的复杂性,并强调了化学保真度的全面性对于详细和降低水平的机理至关重要。然后概述了开发详细反应机制的系统方法,随后对简化机制的发展以及相关的简化计算策略进行了广泛的讨论。涵盖的主题包括骨骼还原,特别是通过有向关系图;基于通过计算奇异摄动实现的准稳态物种概念的时间尺度缩减;异构体和具有相似扩散率的物种的集总;即时去除刚度;隐式和显式求解器的相对优点;通过对算术评估中的计算步骤进行制表和明智地重新排序,可以最大程度地降低计算成本。给出了层流火焰和湍流燃烧直接数值模拟的例子,以证明综合策略和组成方法在将实际燃料的实际化学成分纳入大规模模拟中的效用,同时认识到这些燃料的详细机理可能包括数百种燃料。到成千上万的物种和成千上万的反应。建议进一步研究的方向。

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