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A Chemkin study of a fast sampling valve designed to sample soot precursors inside a forming diesel spray plume

机译:Chemkin对快速采样阀的研究,该阀设计用于采样形成的柴油喷雾羽流中的烟尘前体

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摘要

Accurate chemical reaction mechanisms are critically needed to fully optimize combustion strategies for modern internal-combustion engines. These mechanisms are needed to predict emission formation and the chemical heat release characteristics for traditional direct-injection diesel as well as recently-developed and proposed variant combustion strategies. Experimental data acquired under conditions representative of such combustion strategies are required to validate these reaction mechanisms. This paper explores the feasibility of developing a fast sampling valve which extracts reactants at known locations in the spray reaction structure to provide these data. CHEMKIN software is used to establish the reaction timescales which dictate the required fast sampling capabilities. The sampling process is analyzed using separate FLUENT and CHEMKIN calculations. The non-reacting FLUENT CFD calculations give a quantitative estimate of the sample quantity as well as the fluid mixing and thermal history. A CHEMKIN reactor network has been created that reflects these mixing and thermal time scales and allows a theoretical evaluation of the quenching process.
机译:为完全优化现代内燃机的燃烧策略,急需精确的化学反应机制。需要这些机制来预测传统直喷柴油以及最近开发和提议的可变燃烧策略的排放形成和化学放热特性。需要在代表这种燃烧策略的条件下获得的实验数据来验证这些反应机理。本文探讨了开发快速采样阀的可行性,该阀可在喷雾反应结构的已知位置提取反应物以提供这些数据。 CHEMKIN软件用于建立反应时间尺度,以决定所需的快速采样能力。使用单独的FLUENT和CHEMKIN计算来分析采样过程。非反应性FLUENT CFD计算可对样品量以及流体混合和热历史进行定量估计。已经创建了一个CHEMKIN反应器网络,该网络反映了这些混合和热时间尺度,并可以对淬火过程进行理论评估。

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