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A cell model analysis for droplets inside non-dilute n-heptane droplet clouds near autoignition limit

机译:自燃限近稀稀硝基液滴云中液滴的细胞模型分析

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摘要

Vaporization and two-stage autoignition of single droplets inside the droplet clouds were numerically studied using a spherical cell model. We aimed to investigate the behaviors of individual droplets in a moderately hot ambient (600-800 K) under the influence of surrounding droplets at atmospheric pressure. For a given ratio of distance between droplets L and the droplet diameter D_0, autoignition only occurs when D_0 is above certain critical value. Exemplar cases with L/D_0 = 10 were used for detailed discussion as they are found to be near the autoignition limit. For droplets smaller than 400 μm, no ignition occurs and the surrounding gas phase is saturated by fuel vapor before the droplet completely vaporizes. A simple model of final saturation state was established. With this model, it was observed that when the gas phase in the droplet cloud is saturated, the temperature and fuel concentration distributions are insensitive to the distance between droplets. For droplets larger than 500 μm, a variety of autoignition processes including first stage ignition, cool flame burning, second stage ignition, and diffusional extinction are observed. Unlike single isolated droplets, such behaviors are primarily due to heat accumulation and limited supply of oxidizer that pertains to the scenario of non-dilute droplet cloud. Autoignition of individual droplets in a cloud only happens in the region where chemical time scale is smaller than the physical time scale for vaporization and diffusion. The temperature range of autoignition is broadened with increasing initial droplet diameter. Two potential mechanisms were identified for such broadening. Analyses of 'probable droplet cloud autoignition (PDCA)' region were found to qualitatively predict the state switch of vaporization, cool flame ignition, and second stage ignition.
机译:使用球形电池模型进行数值研究液滴云内部单滴液滴的蒸发和两阶段自燃。我们旨在在大气压下围珠口的影响下调查中等热环境(600-800 k)中各个液滴的行为。对于液滴L和液滴直径D_0之间的距离的给定比率,仅在D_0高于某个临界值时发生自燃。具有L / D_0 = 10的示例案例用于详细讨论,因为它们被发现接近自动限制。对于小于400μm的液滴,不会发生点火,并且在液滴完全蒸发之前,通过燃料蒸汽饱和围绕气相饱和。建立了一个简单的最终饱和状态模型。利用该模型,观察到,当液滴云中的气相是饱和的时,温度和燃料浓度分布对液滴之间的距离不敏感。对于大于500μm的液滴,观察到包括第一级点火,冷火焰燃烧,第二级点火和扩散消光的各种自燃过程。与单个隔离液滴不同,这种行为主要是由于热累积和有限的氧化剂供应,涉及非稀释液滴云的场景。云中的单个液滴的自燃只发生在化学时间尺度小于用于汽化和扩散的物理时间尺度的区域中。随着初始液滴直径的增加,自燃的温度范围变宽。鉴定了两个潜在的机制以进行这种扩大。发现“可能的液滴云自燃(PDCA)”区域的分析定性地预测了汽化,冷火焰点火和第二级点火的状态开关。

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  • 来源
    《International Journal of Heat and Mass Transfer》 |2021年第8期|121189.1-121189.11|共11页
  • 作者单位

    Center for Combustion Energy Tsinghua University Beijing 100084 China Department of Energy and Power Engineering Tsinghua University Beijing 100084 China;

    Center for Combustion Energy Tsinghua University Beijing 100084 China Department of Energy and Power Engineering Tsinghua University Beijing 100084 China;

    Center for Combustion Energy Tsinghua University Beijing 100084 China Department of Energy and Power Engineering Tsinghua University Beijing 100084 China Key Laboratory for Thermal Science and Power Engineering of Ministry of Education Tsinghua University Beijing 100084 China;

  • 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
  • 关键词

    Non-dilute droplet cloud; Vaporization; Two-stage autoignition; n-Heptane;

    机译:非稀释液滴云;汽化;两阶段自燃;n-庚烷;

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