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Flame propagation involved in vortices of supersonic mixing layers laden with droplets: Effects of ambient pressure and spray equivalence ratio

机译:用液滴载有超音速混合层的涡流涉及的火焰繁殖:环境压力和喷雾等效率的影响

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摘要

Numerical simulations are performed to analyze the dynamics of spray flame in a high convective Mach number mixing layer laden with n-decane droplets. The multi-phase reacting flow system is solved by a hybrid Eulerian-Lagrangian model, in which the supersonic mixing layer is mimicked by means of direct numerical simulation and the individual droplets are tracked by the Lagrangian point-mass model. The effects of elevated pressures until 0.5 MPa are emphasized on flame propagation. The spatiotemporal dispersion of fuel droplets are driven by large-scale vortices. The flame kernels are formed in the high-strain vortex-braids, and the flammable mixtures entrained in the vortex are found to burn from the edge to the core of the vortex until the reactants within the vortex are completely consumed. As the reacting pressure increases, the high-temperature region expands such that the behaviors of spray flames are strongly changed. The spray equivalence ratio affects the combustion characteristics. The growth of mixing layer thickness, flame structure, and reaction intensity are varied due to the competition of cooling from droplet evaporation to heat release from exothermic reactions. The present work deepens the understanding of spray flame propagation in supersonic shearing flows. Published by AIP Publishing.
机译:进行数值模拟,以分析用N-癸烷液滴的高对流马赫数混合层中喷雾火焰的动态。多相反应流动系统由混合欧拉拉格朗日模型解决,其中通过直接数值模拟模仿超音速混合层,并通过拉格朗日点质量模型跟踪各个液滴。在火焰繁殖中强调了升高的压力直至0.5MPa的影响。燃料液滴的时空分散由大规模涡流驱动。火焰粒形成在高菌株涡旋织物中,并且发现涡旋中夹带的易燃混合物从边缘燃烧到涡旋的核心,直到涡旋内的反应物完全消耗。随着反应压力的增加,高温区域膨胀,使得喷雾火焰的行为被强烈改变。喷雾等效率影响燃烧特性。由于从放热反应的液滴蒸发到热释放的冷却竞争,混合层厚度,火焰结构和反应强度的生长变化。本工作深化了超音速剪切流量的喷雾火焰传播的理解。通过AIP发布发布。

著录项

  • 来源
    《Physics of fluids》 |2018年第10期|共13页
  • 作者单位

    Northwestern Polytech Univ Sch Power &

    Energy Xian 710072 Shaanxi Peoples R China;

    Tsinghua Univ Sch Aerosp Engn Beijing 1000084 Peoples R China;

    Univ Canterbury Dept Mech Engn Coll Engn Private Bag 4800 Christchurch 8140 New Zealand;

    Northwestern Polytech Univ Sch Power &

    Energy Xian 710072 Shaanxi Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
  • 关键词

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