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Development of an extended reactor configuration to analyze preferential segregation impact on spray autoignition

机译:开发扩展的反应堆配置,分析了对喷涂自燃的优先隔离影响

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摘要

The chemical reactor concept, usually based on a homogeneous mixture, is extended to non-homogeneous twophase flows to study the impact of preferential segregation on the autoignition of an n-heptane spray in air. To introduce inhomogeneities, two-dimensional reactors are resolved thanks to direct numerical simulations (DNS) with Eulerian/Lagrangian description to follow the evolution of the carrier phase and the dispersed evaporating droplets, respectively. Two-way coupling is considered through exchange of mass, momentum, and energy between the carrier-gas phase and the dispersed phase. A chemistry mechanism with 29 species and 52 reactions was chosen to describe the chemical reaction paths. Several simulations were performed with various initial gas temperatures (i.e. low, intermediate and high) and various geometrical and physical characteristics of the preferential segregation. Results confirmed that evaporative cooling, vapor mass quantity and turbulence mixing play important roles in the two-phase flow autoignition. We discussed the ignition delay as well as the location of the first hot spots according to the initial gas temperatures. The dependence of most reactive mixture fraction on initial carrier-gas temperature is non-monotonic, thus there is a strong correlation between the first autoignition location and low scalar dissipation rate. On the other hand, the autoignition can start whatever the vorticity magnitude is.
机译:通常基于均匀混合物的化学反应器概念延伸到非均匀的脱代流动,以研究优先偏析对空气中正庚烷喷雾的自燃的影响。为了引入不均匀性,由于具有欧拉/拉格朗日的直接数值模拟(DNS)来解决二维反应器,分别遵循载体相和分散的蒸发液滴的演变。通过载体气相与分散相之间的质量,动量和能量进行抵消双向耦合。选择具有29种和52个反应的化学机制,以描述化学反应路径。用各种初始气体温度(即低,中间和高)和优先偏析的各种几何和物理特征进行了几种模拟。结果证实,蒸发冷却,蒸气质量和湍流混合在两相流自燃中起重要作用。我们讨论了根据初始气体温度的点火延迟以及第一热点的位置。大多数反应混合物分数对初始载气温度的依赖性是非单调的,因此第一自燃位置与低标量耗散速率之间存在强的相关性。另一方面,自燃可以开始任何涡流幅度。

著录项

  • 来源
    《Fuel 》 |2021年第15期| 120869.1-120869.15| 共15页
  • 作者

    Bouali Z.; Reveillon J.; Pera C.;

  • 作者单位

    Inst Pprime CNRS ENSMA UPR3346 BP40109 F-86961 Poitiers France|Univ Poitiers BP40109 F-86961 Poitiers France|IFP Energies Nouvelles 1-4 Ave Bois Preau F-92500 Rueil Malmaison France;

    Univ Rouen CORIA Ave Univ F-76800 St Etienne Du Rouvray France|INSA Rouen Ave Univ F-76800 St Etienne Du Rouvray France;

    IFP Energies Nouvelles 1-4 Ave Bois Preau F-92500 Rueil Malmaison France|OROVEL Ltd Abingdon Oxon England;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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